Seguam

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Facts


  • Official Name: Seguam Island
  • Seismically Monitored: No
  • Color Code: UNASSIGNED
  • Alert Level: UNASSIGNED
  • Elevation: 1054m (3458ft)
  • Latitude: 52.316
  • Longitude: -172.51
  • Smithsonian VNum: 311180
  • Pronunciation:
  • Nearby Towns:
    • Atka 72 mi (116 km) SW
    • Nikolski 159 mi (255 km) NE
    • Adak 177 mi (286 km) SW
    • Unalaska 270 mi (435 km) NE
    • Akutan 306 mi (492 km) NE

    Distance from Anchorage: 1045 mi (1683 km)

  • Subfeatures:
    • Pyre Peak
    • Wilcox
    • Moundhill

Description

From Miller and others (1998) [1] : "Seguam Island consists of the remnants of two late Quaternary calderas. Holocene volcanic cones occur in both of the calderas and a third Holocene cone lies at the east end of the island. Pyre Peak, commonly referred to as Sequam volcano, highest of the young cones, dominates the western half of the island and occupies the center of the western caldera [2] that is defined by remnants of a semi-circular ridge about 3 km in original diameter and about 700 m high. A Holocene basalt field surrounds Pyre Peak [2] extending down to shoreline. This general area has been the site of most if not all historical volcanic activity. Late Quaternary lavas and pyroclastic rocks ranging in age from 1.1 Ma to 0.03 Ma underlie the basalt. The two Holocene cones to the east are surrounded by andesite and dacite lava flows with well preserved constructional features [2] ."

Name Origin

Seguam Island was called "Ostrov Seguam" by Lieutenant Sarichev, from an Unangam Tunuu name. Lutke called it "Segouam ile" and "Gorely Ile (1836). "Goreli" is Russian for "burnt" (Orth, 1971).


References Cited

[1] Catalog of the historically active volcanoes of Alaska, 1998

Miller, T. P., McGimsey, R. G., Richter, D. H., Riehle, J. R., Nye, C. J., Yount, M. E., and Dumoulin, J. A., 1998, Catalog of the historically active volcanoes of Alaska: U.S. Geological Survey Open-File Report 98-0582, 104 p.

[2] Mid-Pleistocene lavas from the Seguam volcanic center, central Aleutian arc: closed-system fractional crystallization of a basalt to rhyodacite eruptive suite, 1992

Singer, B. S., Myers, J. D., and Frost, C. D., 1992, Mid-Pleistocene lavas from the Seguam volcanic center, central Aleutian arc: closed-system fractional crystallization of a basalt to rhyodacite eruptive suite: Contributions to Mineralogy and Petrology, v. 110, p. 87-112.

Reported Activity

Modern Eruptions

Martin

Martin Eruption Timeline

Martin 1913

1913 — 1919

From Miller and others (1998): "Mount Martin, venting a prominent steam plume, was first photographed in 1913 but erroneously called Mt. Katmai (Griggs, 1922). In 1915, Griggs (1922) recognized that the mountain was an unknown, fumarolically active volcano west of Mount Mageik and named it in honor of George C. Martin, who was the first to visit and describe the Katmai area following the 1912 eruption.
"Numerous reports of activity from Mount Martin are contained in the literature. Sapper (1927) reported strong 'smoke' clouds from Mount Martin during the period 1913-1919; Griggs (1922) who explored the area during that time, mentioned only steam." The persistent and conspicuous steam plume present at Mt. Martin does not constitute a volcanic eruption.

From Hubbard (1931): "The day [in 1922] was unusually clear, and Martin, Mageik, and Kukak volcanoes were sending graceful columns of smoke high in the air, the ship's sextant giving the height of Martin's plume as close to 20,000 feet." This activity does not constitute a volcanic eruption.

Martin 1927/5

May 18, 1927

From Jaggar (1927): "Mageik and Martin were two volcanoes seen by Dr. Jaggar to be steaming, looking northwest from Shelikof Strait on May 18, 1927." This steaming does not constitute a volcanic eruption.

Jaggar (1929) reported that Martin and Mageik volcanoes were steaming throughout 1929. This activity does not constitute a volcanic eruption.

Martin 1951/7

July 22, 1951

From Muller and others (1954): "In recent years Mount Martin, a 6050-foot peak 11 miles southwest of Mount Trident, has been one of the steadiest performers in this part of the Aleutian Range. Because of Mount Martin's location, some of its activity has been incorrectly attributed to its larger neighbor to the northeast, Mount Mageik. Probably both the ashfall at Kukak Bay on July 22, 1951, and the eruptions reported as occurring simultaneously with Mount Trident's activity in February 1953, came from Mount Martin."
Miller and others (1998), however, doubt the validity of this eruption, stating that "all reports of eruption or ash emission are probably spurious, reflecting only the persistent and conspicuous steam plume. Steam emission is normally vigorous and continuous from the summit vent of Mount Martin with plumes occasionally rising 600 m above the vent and extending downwind for 20 km."

Martin 1953/2

February 1953

Muller and others (1954) state that they believe the "eruptions reported as occurring simultaneously with Mount Trident's activity in February 1953" came from Mt. Martin, and also note that "During the second week of July [1953] Mount Martin was observed to be steaming steadily and with moderate vigor, although its plume was less conspicuous than that of Trident. During this interval, only quiet steaming occurred at the crater near the crest of Mount Mageik."
However, Miller and others (1998) discount this eruption report, saying "all reports of eruption or ash emission are probably spurious, reflecting only the persistent and conspicuous steam plume. Steam emission is normally vigorous and continuous from the summit vent of Mount Martin with plumes occasionally rising 600 m above the vent and extending downwind for 20 km."

Martin 1965/8

August 3, 1965 — August 5, 1965

Ward and Matumoto (1967) note that "During August 3-5, 1965, pulverized ash filled the air in the region from the Valley of Ten Thousand Smokes to Brooks Lake. Although several people were within ten miles of Mts. Trident and Martin, the suspected sources, no aerial or ground reconnaissance could establish whether this ash was of volcanic origin or simply windblown (Ward and Ward, 1966.)" Ward also notes that Mt. Martin "fumed steadily" during 1965.
However, Miller and others (1998) don't believe that this is an eruption account, saying "all reports of eruption or ash emission are probably spurious, reflecting only the persistent and conspicuous steam plume. Steam emission is normally vigorous and continuous from the summit vent of Mount Martin with plumes occasionally rising 600 m above the vent and extending downwind for 20 km." Additionally, the 1965 event could simply be 1912 Novarupta ash remobilized by strong winds.

The Bulletin of Volcanic Eruptions (1980) noted that during 1978: "This volcano continues to actively steam from its summit crater, and is the most conspicuous steamer in the Katmai region. The steam appears to rise from numerous fumaroles circling the crater rim." This activity does not constitute a volcanic eruption.

Martin 1994/12

December 5, 1994

From Neal and others (1995): "The Weather Forecast unit at Elmendorf Air Force Base reported a plume-like cloud originating from the general region of the Katmai group and moving toward Kodiak Island on December 5 [1994]. A satellite image indicated a possible hot spot at the source of the plume which appeared to be near the Mageik-Martin-Trident volcano cluster. AVO and NWS checks of concurrent satellite imagery showed nothing unusual and it was concluded that this was a meterological phenomenon."

Martin 1995/3

March 15, 1995

From McGimsey and Neal (1996): "On Wednesday, March 15, 1995, the National Weather Service (NWS) received a report that residents in King Salmon, located 92 km (57 mi) to the northwest observed steam plumes rising 600-900 m (2000-3000 ft) over the general vicinity of Mount Martin. No indication of eruptive activity was detected on satellite imagery."

Martin 1997/12

December 11, 1997

From McGimsey and Wallace (1999): "On Thursday, February 19, 1997, AVO received multiple pilot reports (PIREPs) of ash and steam rising to 5,000 ft (~1,500 m) above either Martin or Mageik volcanoes. No anomalous seismic activity was recorded on the Katmai seismic network, and no indication of eruptive activity was detected on satellite imagery."
"* * * Another observation of unusual steaming at Martin and Mageik was reported to AVO on December 11, 1997, via the Alaska Tsunami Warning Center, who received the report from a resident of Karluk Village on Kodiak Island. Using a spotting scope, the village resident had observed the peaks for the previous three weeks - noting no unusual activity - when on the morning of the 11th he witnessed a sudden increase in steam activity and watched as white, towering steam clouds billowed from Martin, subsided, and then rose again to about 600-700 ft (~200 m) above the vent, forming a large mushroomed top before dissipating. A second white, billowing steam plume then rose from adjacent Mageik. Local pilots also noticed the unusually vigorous activity."
Miller and others (1998) state that these events do not constitute a volcanic eruption.

Martin 2002/12

December 11, 2002

From Neal and others (2005): "On December 11, 2002, the National Weather Service office in King Salmon reported a 'large steam plume' emanating from mountains east of King Salmon and extending up into the cloud deck. No discoloration was noted in the cloud. AVO staff examined the real-time seismic data from the Katmai area network and saw no evidence of anomalous behavior. No cloud or thermal anomaly was detected in Advanced Very High Resolution Radiometer (AVHRR) images. This information was relayed back to NWS in King Salmon.
"About 45 minutes later, the NWS at the Anchorage Air Route Traffic Control Center issued an urgent pirep (UUA) based on a pilot report of a 'strange plume' from Martin or Mageik that extended into cloud deck at about 7,000-10,000 ft. AVO concluded that this was the same observation reported earlier from King Salmon and took no further action."

From Neal and others (2005; Open File 2005-1308): "On February 17, AVO received a call from the Bristol Bay Fire Chief Alan Williams who reported a 'steam column, all white, rising vertically above mountains to the east (of Naknek, 25 km [16 mi] west of King Salmon) * * * bigger than normal, and dissipating with altitude.' Williams had been a resident of the area for some years and felt this was a much larger a steam plume than was typical for the Katmai group. Williams' photos [see fig. 12 in original text] show the plume rising from Mount Martin, one of the Katmai Group of volcanoes with a very active and robust fumarolic area near its summit. AVO checked the seismic records for the Katmai area and noted no unusual signals for several hours before or after the time of this sighting.
"On October 7, AVO received a pilot report from NWS describing 'a volcano spewing steam and ash' approximately in the location of Martin or Mageik; seismicity was normal and this information was relayed back to NWS who took no further action."

Martin 2005/2

February 26, 2005

From McGimsey and others (2007): "On February 26 [2005], AVO received from the Center Weather Service Unit (CWSU) several pilot reports of a steam cloud rising to 12,000 ft (3,360 m) from Katmai. An inspection of the webicorders, spectrograms, and satellite logs revealed nothing unusual. Because Katmai Volcano does not have active fumaroles, the reported activity was attributed to nearby Mounts Mageik or Martin, both of which have active fumaroles that frequently produce noticeable steam plumes. Nonvolcanic meterological phenomena that commonly are mistaken for volcanic activity also are common in this area."

Martin 2006/1

January 8, 2006 — January 22, 2006

From Neal and others (2009): "On January 10, 2006, AVO raised the Level of Concern from GREEN to YELLOW after a sharp increase in earthquake activity beneath Mount Martin that had begun on January 8 (Dixon and others, 2007). Roughly 300 earthquakes were located in just over 2 days [see fig. 38 in original text], a significant increase over the long-term average rate of less than one event per day since the seismic network was installed in 1996. Satellite data did not indicate any obvious changes at the surface.
"Elevated seismicity continued for about 2 weeks after which the rate of shallow volcano-tectonic earthquakes decreased to levels considered background for Mount Martin. On January 27, AVO downgraded the Level of Concern to GREEN. Throughout this seismic swarm, no surface manifestations of the increase in seismicity were noted in satellite imagery or by passing pilots. The cause of this swarm remains uncertain (John Power, USGS, oral commun., 2007)."

Martin 2012/4

April 11, 2012

From Herrick and others (2014): "During 2012, in addition to reports of strong fumarolic activity, the AVO seismic network recorded bursts of elevated seismicity, similar to episodes seen in recent years (Dixon and Power, 2009; O'Brien and others, 2012). The Aviation Color Code and Volcano Alert Level at Martin remained GREEN/NORMAL.
"In mid-April, AVO received three emails regarding activity at Martin. Observers in the area of Lower Ugashik Lake about 120 km (75 mi) to the southwest noted a plume that was larger than any that had been seen in more than 50 years in the area. Another observation from an overflight reported a strong sulfur odor; this observer shared photographs of the cone and the summit crater with AVO. Comparisons with other recent photographs of Martin suggested no significant change in activity. Previous overflights of Martin routinely noted sulfur smell and gas measurement flights typically measure both SO2 and H2S (Doukas and McGee, 2007).
"On June 27, climbers ascended the volcano and reported a strong sulfur odor upon reaching the crater rim. Gas concentration was strong enough to cause coughing and a burning-throat sensation. They described roaring and bubbling noises coming from the crater lake and three fumaroles located on the triangular peak 'below the summit cone on the northeastern side of Mount Martin.' Additionally, 'snow on the entire final summit cone was tinged yellow from sulfur. . . .' These attributes previously have been noted at Martin during many AVO field visits to the volcano and are considered typical."

Martin 2014/10

October 7, 2014 — November 24, 2014

From Cameron and others, 2017: "Beginning on October 7, the AVO seismic network recorded an earthquake swarm centered roughly 15 km (9.3 mi) northwest of Mount Martin in an area where about 10 earthquakes per year are recorded. Twenty-six earthquakes were recorded on October 7, and, over the next 5 days, a total of 40 earthquakes were recorded. The largest earthquake in the swarm was a M1.8 on October 7. Seismicity in the Katmai region is dominated by earthquakes at volcanic centers; this swarm occurred in an established cluster of seismicity, closest to Mount Martin. The cluster of seismicity is dominated by shallow (less than 10 km [6.2 mi] deep) earthquakes with calculated magnitudes less than M2. No specific cause has been identified for the long-lived seismicity at this location.
"On November 24, observers in King Salmon emailed AVO about robust steam plumes rising about 300 m (about 1,000 ft) above Mount Martin. Observers reported that the plumes continued until the evening of November 25, after which they were no longer visible from King Salmon. These fumarolic vapor plumes are common at Mount Martin (McGimsey and Neal, 1996; McGimsey and Wallace, 1999; Neal and others, 2005; McGimsey and others, 2007; Herrick and others, 2014)."

Loading

Martin non-eruptive activity 2019

March 14, 2019 — December 15, 2019

From Orr and others, 2023: "Although no historical eruptions of Mount Martin are known, its fumarolic field frequently produces towering vapor plumes that can reach as high as 1,000 m above the summit when environmental conditions are right. Such a plume was observed on March 14, as described in two PIREPs released by the Federal Aviation Administration (FAA). The reports, which described steaming to 10,000 ft (3,000 m) from 'a mountain,' were linked to Mount Martin and quickly verified as typical activity for this volcano.
"Mount Martin showed an increase in seismicity during 2019, although the cause was undetermined. Earthquakes at the volcano are common - AVO typically locates as many as one dozen weekly - but approximately 400 located earthquakes took place in September 2019, a swarm that was the largest at Mount Martin since 2006 (O’Brien and others, 2012). The activity declined to about 100 earthquakes per month in October and November, then returned to background levels in December. Background-level earthquakes at Mount Martin typically cluster at a shallow depth in a diffuse pattern north of the summit. In contrast, the 2019 swarm was located predominantly in the west half of this background cluster zone and at a slightly greater depth. AVO closely monitored Mount Martin’s temporary increase in seismicity but kept the Aviation Color Code and Volcano Alert Level at GREEN and NORMAL throughout the year."

Martin 1913

Martin 1922

Martin 1927/5

Martin 1929

Martin 1951/7

Martin 1953/2

Martin 1965/8

Martin 1978

Martin 1994/12

Martin 1995/3

Martin 1997/12

Martin 2002/12

Martin 2004

Martin 2005/2

Martin 2006/1

Martin 2012/4

Martin 2014/10

Martin non-eruptive activity 2019

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13 Event Date(s)

Past Activity Legend:
Eruption
Questionable eruption
Non-eruptive activity


Showing 1 - 20 of 30

Map Images


Map References


Recently active volcanoes of Alaska, 2023

Cameron, C.E., Bull, K.F., and Macpherson, A.E., 2023, Recently active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 6, 2 sheets. https://doi.org/10.14509/31086.

Historically active volcanoes of Alaska, v. 3, 2018

Cameron, C.E., Schaefer, J.R., and Mulliken, K.M., 2018, Historically active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 3, 2 sheets. Http://doi.org/10.14509/30142

Historically active volcanoes of Alaska, 2014

Schaefer, J.R., Cameron, C.E., and Nye, C.J., 2014, Historically active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 1.2, 1 sheet, scale 1:3,000,000. This publication has been superseded. Newest version available at http://www.dggs.alaska.gov/pubs/id/20181 .

Historically active volcanoes of the Aleutian Arc, 2002

Schaefer, Janet, and Nye, C. J., 2002, Historically active volcanoes of the Aleutian Arc: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication MP 0123, unpaged, 1 sheet, scale 1:3,000,000. Superceded by Miscellaneous Publication 133: http://www.dggs.dnr.state.ak.us/pubs/pubs?reqtype=citation&ID=20181

Volcanoes of Alaska, 1998

Nye, C. J., Queen, Katherine, and McCarthy, A. M., 1998, Volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Information Circular IC 0038, unpaged, 1 sheet, scale 1:4,000,000, available at http://www.dggs.dnr.state.ak.us/pubs/pubs?reqtype=citation&ID=7043 .
Hard Copy held by AVO at FBKS - CEC shelf

Volcanoes of Alaska, 1995

Alaska Division of Geological & Geophysical Surveys, 1995, Volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Information Circular IC 0038, unpaged, 1 sheet, scale 1:4,000,000.

Aleutian arc volcanoes, 1994

Nye, C. J., 1994, Aleutian arc volcanoes: Alaska Division of Geological & Geophysical Surveys Public-Data File PDF 94-54, unpaged, 1 sheet, scale 1:2,126,841.

Geothermal resources of the Aleutian Arc, 1993

Motyka, R. J., Liss, S. A., Nye, C. J., and Moorman, M. A., 1993, Geothermal resources of the Aleutian Arc: Alaska Division of Geological & Geophysical Surveys Professional Report PR 0114, 17 p., 4 sheets, scale 1:1,000,000.
Hard Copy held by AVO at FBKS - CEC shelf

Holocene volcanoes of the Aleutian Arc, Alaska, 1993

March, G. D., 1993, Holocene volcanoes of the Aleutian Arc, Alaska: Alaska Division of Geological & Geophysical Surveys Public-Data File PDF 93-85, unpaged, 1 sheet, scale 1:2,000,000.

Map showing distribution, composition, and age of Late Cenozoic volcanic centers in Alaska, 1986

Luedke, R. G., and Smith, R. L., 1986, Map showing distribution, composition, and age of Late Cenozoic volcanic centers in Alaska: U.S. Geological Survey Miscellaneous Investigations Series Map I 1091-F, unpaged, 3 sheets, scale 1:1,000,000.

Geothermal energy resources of Alaska, 1980

Turner, D. L., Forbes, R. B., Albanese, Mary, Macbeth, Joyce, Lockhart, A. B., and Seed, S. M., 1980, Geothermal energy resources of Alaska: University of Alaska Fairbanks Geophysical Institute Report UAG-R 279, 19 p., 3 sheets, scale 1 at 1:2,500,000.

Volcanic activity in the Aleutian Arc, 1950

Coats, R. R., 1950, Volcanic activity in the Aleutian Arc: U.S. Geological Survey Bulletin 0974-B, p. 35-49, 1 sheet, scale 1:5,000,000.
plate 1 PDF 819 KB
full-text PDF 783 KB
Hard Copy held by AVO at FBKS - CEC shelf

Reconnaissance of the gold fields of southern Alaska with some notes on general geology, 1898

Becker, G. F., 1898, Reconnaissance of the gold fields of southern Alaska with some notes on general geology: U.S. Geological Survey Annual Report 0018, p. 1-86, 6 sheets, scale unknown.
full-text PDF 1.5 MB
Hard Copy held by AVO at FBKS - CEC file cabinet

References

Deformation mapping and modeling of the Aleutian volcanoes with InSAR and numerical models, 2024

Wang, J., 2024, Deformation mapping and modeling of the Aleutian volcanoes with InSAR and numerical models: University Park, Tex., Southern Methodist University, Ph.D. dissertation, 143 p.
Full-text PDF 8.4 MB

Recently active volcanoes of Alaska, 2023

Cameron, C.E., Bull, K.F., and Macpherson, A.E., 2023, Recently active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 6, 2 sheets. https://doi.org/10.14509/31086.

Along-arc volcanism in the western and central Aleutian from 2015 to 2021 revealed by cloud-based InSAR processing, 2023

Wang, J., Lu, Z., Bekaert, D., Marshak, C., Govorcin, M., Sangha, S., Kennedy, J., and Gregg, P., 2023, Along-arc volcanism in the western and central Aleutian from 2015 to 2021 revealed by cloud-based InSAR processing: Geophysical Research Letters v. 50, no. 23, e2023GL106323. https://doi.org/10.1029/2023GL106323
Full-text PDF 3.9 MB

Alaska interagency operating plan for volcanic ash episodes, 2022

Alaska Volcano Observatory, National Oceanic and Atmospheric Administration, National Weather Service, Federal Aviation Administration, Department of Defense, United States Coast Guard, Division of Homeland Security and Emergency Management, Alaska Department of Environmental Conservation, and Alaska Department of Health and Social Services (participating agencies), 2022, Alaska interagency operating plan for volcanic ash episodes, 85 p.

Geologic database of information on volcanoes in Alaska (GeoDIVA), 2022

Cameron, C.E., Crass, S.W., and AVO Staff, eds, 2022, Geologic database of information on volcanoes in Alaska (GeoDIVA): Alaska Division of Geologic and Geophysical Surveys Digital Data Series 20, https://doi.org/10.14509/geodiva, https://doi.org/10.14509/30901.

Quantifying eruptive and background seismicity, deformation, degassing, and thermal emissions at volcanoes in the United States during 1978-2020, 2021

Reath, K., Pritchard, M.E., Roman, D.C., Lopez, T., Carn, S., Fischer, T.P., Lu, Z., Poland, M.P., Vaughan, R.G., Wessels, R., Wike, L.L., and Tran, H.K., 2021, Quantifying eruptive and background seismicity, deformation, degassing, and thermal emissions at volcanoes in the United States during 1978-2020: Journal of Geophysical Research: Solid Earth, v. 126, e2021JB021684, doi: 10.1029/2021JB021684.

Historically active volcanoes of Alaska, v. 4, 2020

Cameron, C.E., Schaefer, J.R., and Ekberg, P.G., 2020, Historically active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 4, 2 sheets. Http://doi.org/10.14509/30426

The prevalence and significance of offset magma reservoirs at arc volcanoes, 2020

Lerner, A.H., O'Hara, D., Karlstrom, L., Ebmeier, S.K., Anderson, K.R., and Hurwitz, S., 2020, The prevalence and significance of offset magma reservoirs at arc volcanoes: Geophysical Research Letters, v. 47, doi:10.1029/2020GL087856.

The depths and locations of magma reservoirs and their consequences for the behavior of sulfur and volcanic degassing, 2020

Lerner, A.H., 2020, The depths and locations of magma reservoirs and their consequences for the behavior of sulfur and volcanic degassing: University of Oregon Ph.D. thesis, 378 p. Available at https://search.proquest.com/openview/cec1ff16af338dce2495b5a1a491aa88/1?pq-origsite=gscholar&cbl=44156.

Vapor-bubble growth in olivine-hosted melt inclusions, 2020

Rasmussen, D.J., Plank, T.A., Wallace, P.J., Newcombe, M.E., and Lowenstern, J.B., 2020, Vapor-bubble growth in olivine-hosted melt inclusions: American Mineralogist, v. 105, no. 12, p. 1898-1919, https://doi.org/10.2138/am-2020-7377.

The Alaska Volcano Observatory: 30 years of protecting Alaskans from the effects of volcanic activity (1988-2018), 2018

Mulliken, K.M., 2018, The Alaska Volcano Observatory: 30 years of protecting Alaskans from the effects of volcanic activity (1988-2018): Alaska Division of Geological & Geophysical Surveys Information Circular 67, 2 p. http://doi.org/10.14509/30032

2018 update to the U.S. Geological Survey national volcanic threat assessment, 2018

Ewert, J.W., Diefenbach, A.K., and Ramsey, D.W., 2018, 2018 update to the U.S. Geological Survey national volcanic threat assessment: U.S. Geological Survey Scientific Investigations Report 2018-5140, 40 p., https://pubs.usgs.gov/sir/2018/5140/sir20185140.pdf.

Historically active volcanoes of Alaska, v. 3, 2018

Cameron, C.E., Schaefer, J.R., and Mulliken, K.M., 2018, Historically active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 3, 2 sheets. Http://doi.org/10.14509/30142

Quantifying arc migration and the role of forearc subduction erosion in the central Aleutians, 2018

Jicha, B.R., and Kay, S.M., 2018, Quantifying arc migration and the role of forearc subduction erosion in the central Aleutians: Journal of Volcanology and Geothermal Research, v, 360, p. 84-99, doi: http://dx.doi.org/10.1016/j.jvolgeores.2018.06.016.

Historically active volcanoes of Alaska, 2016

Cameron, C.E., and Schaefer, J.R., 2016, Historically active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 2, 1 sheet, scale 1:3,000,000. http://doi.org/10.14509/20181

An assessment of clinopyroxene as a recorder of magmatic water and magma ascent rate, 2016

Lloyd, A.S., Ferriss, E., Ruprecht, P., Hauri, E.H., Jicha, B.R., and Plank, T., 2016, An assessment of clinopyroxene as a recorder of magmatic water and magma ascent rate: Journal of Petrology, v. 57, n. 10, p. 1865-1886.

Alaska Volcano Observatory image database, 2016

Cameron, C.E., and Snedigar, S.F., 2016, Alaska Volcano Observatory image database: Alaska Division of Geological & Geophysical Surveys Digital Data Series 13, https://www.avo.alaska.edu/images/. https://doi.org/10.14509/29689.

Historically active volcanoes of Alaska, 2014

Schaefer, J.R., Cameron, C.E., and Nye, C.J., 2014, Historically active volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication 133 v. 1.2, 1 sheet, scale 1:3,000,000. This publication has been superseded. Newest version available at http://www.dggs.alaska.gov/pubs/id/20181 .

InSAR imaging of Aleutian volcanoes, 2014

Lu, Zhong, and Dzurisin, Daniel, 2014, InSAR imaging of Aleutian volcanoes: Chichester, UK, Springer-Praxis, 390 p.

Dynamic deformation of Seguam Island, Alaska, 1992-2008, from multi-interferogram InSAR processing, 2013

Lee, Chang-Wook, Lu, Zhong, Won, Joong-Sun, Jung, Hyung-Sun, and Dzurisin, Daniel, 2013, Dynamic deformation of Seguam Island, Alaska, 1992-2008, from multi-interferogram InSAR processing: Journal of Volcanology and Geothermal Research, v. 260, p. 43-51, doi:10.1016/j.jvolgeores.2013.05.009

Volcano collapse along the Aleutian Ridge (western Aleutian Arc), 2011

Montanaro, C., and Beget, J., 2011, Volcano collapse along the Aleutian Ridge (western Aleutian Arc): Natural Hazards and Earth System Sciences, v. 11, n. 3., p. 715-730, available online at http://www.nat-hazards-earth-syst-sci.net/11/715/2011/nhess-11-715-2011.pdf .
full-text pdf 915 KB

Subduction controls of Hf and Nd isotopes in lavas of the Aleutian island arc, 2010

Yogodzinski, G.M., Vervoort, J.D., Brown, S.T., and Gerseny, M., 2010. Subduction controls of Hf and Nd isotopes in lavas of the Aleutian island arc: Earth and Planetary Science Letters, v. 300, p. 226-238, doi: 10.1016/j.epsl.2010.09.035 .

The role of water in generating the calc-alkaline trend: new volatile data for Aleutian magmas and a new tholeiitic index, 2010

Zimmer, M.M., Plank, Terry, Hauri, E.H., Yogodzinski, G.M., Stelling, Peter, Larsen, Jessica, Singer, Brad, Jicha, Brian, Mandeville, Charles, and Nye, C.J., 2010, The role of water in generating the calc-alkaline trend: new volatile data for Aleutian magmas and a new tholeiitic index: Journal of Petrology, v. 5, n. 12, p. 2411, 2444, doi:10.1093/petrology/egq062 .

Pacific Basin tsunami hazards associated with mass flows in the Aleutian arc of Alaska, 2009

Waythomas, C.F., Watts, Philip, Shi, Fengyan, and Kirby, J.T., 2009, Pacific Basin tsunami hazards associated with mass flows in the Aleutian arc of Alaska: Quaternary Science Reviews, v. 28, p. 1006-1019, doi:10.1016/j.quascirev.2009.02.019 .

Historically active volcanoes of Alaska reference deck, 2009

Snedigar, S.F., and Cameron, C.C., 2009, Historically active volcanoes of Alaska reference deck: Alaska Division of Geological & Geophysical Surveys Information Circular 59, 52 p, available to order from http://www.dggs.dnr.state.ak.us/pubs/pubs?reqtype=citation&ID=20401 .

Chronology and references of volcanic eruptions and selected unrest in the United States, 1980-2008, 2009

Diefenbach, A.K., Guffanti, Marianne, and Ewert, J.W., 2009, Chronology and references of volcanic eruptions and selected unrest in the United States, 1980-2008: U.S. Geological Survey Open-File Report 2009-1118, 85 p., available at http://pubs.usgs.gov/of/2009/1118/ .

Preliminary spreadsheet of eruption source parameters for volcanoes of the world, 2009

Mastin, L.G., Guffanti, Marianne, Ewert, J.E., and Spiegel, Jessica, 2009, Preliminary spreadsheet of eruption source parameters for volcanoes of the world: U.S. Geological Survey Open-File Report 2009-1133, v. 1.2, 25 p., available at http://pubs.usgs.gov/of/2009/1133/ .

Water in Aleutian magmas: its origins in the subduction zone and its effects on magma evolution, 2009

Zimmer M. M., 2009, Water in Aleutian Magmas: its origins in the subduction zone and its effects on magma evolution: Boston University Ph.D. dissertation, 356 p.
Hard Copy held by AVO at FBKS - CEC shelf

The Alaska Volcano Observatory - 20 years of volcano research, monitoring, and eruption response, 2008

Schaefer, J.R., and Nye, Chris, 2008, The Alaska Volcano Observatory - 20 years of volcano research, monitoring, and eruption response: Alaska Division of Geological & Geophysical Surveys, Alaska GeoSurvey News, NL 2008-001, v. 11, n. 1, p. 1-9, available at http://wwwdggs.dnr.state.ak.us/pubs/pubs?reqtype=citation&ID=16061 .

20th anniversary of the Alaska Volcano Observatory, 2008

University of Alaska Fairbanks Geophysical Institute, 2008, 20th anniversary of the Alaska Volcano Observatory: University of Alaska Geophysical Institute pamphlet, 2 p.

The role of volatile exsolution and sub-solidus fluid/rock interactions in producing high 56Fe/54Fe ratios in siliceous igneous rocks, 2008

Heimann, Adriana, Beard, B.L., and Johnson, C.M., 2008, The role of volatile exsolution and sub-solidus fluid/rock interactions in producing high 56Fe/54Fe ratios in siliceous igneous rocks: Geochimica et Cosmochimica Acta, v. 72, n. 17, p. 4379-4396, doi: 10.1016/j.gca.2008.06.009 .

InSAR imaging of volcanic deformation over cloud-prone areas - Aleutian Islands, 2007

Lu, Zhong, 2007, InSAR imaging of volcanic deformation over cloud-prone areas - Aleutian Islands: Photogrammetric Engineering and Remote Sensing, v. 73, n. 3, p. 245-257.

System for ranking relative threats of U.S. volcanoes, 2007

Ewert, John, 2007, System for ranking relative threats of U.S. volcanoes: Natural Hazards Review, v. 8, n. 4, p. 112-124.

Along-strike trace element and isotopic variation in Aleutian Island arc basalt: subduction melts sediments and dehydrates serpentine, 2007

Singer, B.S., Jicha, B.R., Leeman, W.P., Rogers, N.W., Thirlwall, M.F., Ryan, Jeff, and Nicolaysen, K.E., 2007, Along-strike trace element and isotopic variation in Aleutian Island arc basalt: subduction melts sediments and dehydrates serpentine: Journal of Geophysical Research, v. 112, n. B6, 26 p., doi: 10.1029/2006JB004897 .

Volcanic history and magmatic evolution of Seguam Island, Aleutian island arc, Alaska, 2006

Jicha, B.R., and Singer, B.S., 2006, Volcanic history and magmatic evolution of Seguam Island, Aleutian island arc, Alaska: Geological Society of America Bulletin, v. 118, n. 7-8, p. 805-822.

Catalog of earthquake hypocenters at Alaskan volcanoes: January 1 through December 31, 2005, 2006

Dixon, J.P., Stihler, S.D., Power, J.A., Tytgat, Guy, Estes, Steve, and McNutt, S.R., 2006, Catalog of earthquake hypocenters at Alaskan volcanoes: January 1 through December 31, 2005: U.S. Geological Survey Open-File Report 2006-1264, 78 p., available at http://pubs.usgs.gov/of/2006/1264/ .

The National Volcano Early Warning System (NVEWS), 2006

Ewert, John, Guffanti, Marianne, Cervelli, Peter, and Quick, James, 2006, The National Volcano Early Warning System (NVEWS): U.S. Geological Survey Fact Sheet FS 2006-3142, 2 p., available at http://pubs.usgs.gov/fs/2006/3142 .

Geochronic and isotopic constraints on the magmatic evolution of Pleistocene-Recent Aleutian and Andean volcanic complexes, 2006

Jicha, B.R., 2006, Geochronic and isotopic constraints on the magmatic evolution of Pleistocene-Recent Aleutian and Andean volcanic complexes: University of Wisconsin Madison Ph.D. dissertation, 195 p.

An assessment of volcanic threat and monitoring capabilities in the United States: framework for a National Volcano Early Warning System NVEWS, 2005

Ewert, J.W., Guffanti, Marianne, and Murray, T.L., 2005, An assessment of volcanic threat and monitoring capabilities in the United States: framework for a National Volcano Early Warning System NVEWS: U.S. Geological Survey Open-File Report 2005-1164, 62 p.
full-text PDF 2.90 MB

Contrasting timescales of crystallization and magma storage beneath the Aleutian Island arc, 2005

Jicha, B.R., Singer, B.S., Beard, B.L., Johnson, C.M., 2005, Contrasting timescales of crystallization and magma storage beneath the Aleutian Island arc: Earth and Planetary Science Letters, v. 236, p. 195-210.

InSAR studies of Alaska volcanoes, 2005

Lu, Z., Wicks, C., Dzurisin, D., and Power, J., 2005, InSAR studies of Alaska volcanoes: Korean Journal of Remote Sensing v. 21, no. 1, pg. 59-72. https://doi.org/10.7780/kjrs.2005.21.1.59

Transient volcano deformation sources imaged with interferometric synthetic aperture radar: application to Seguam Island, Alaska, 2004

Masterlark, Tim, and Lu, Zhong, 2004, Transient volcano deformation sources imaged with interferometric synthetic aperture radar: application to Seguam Island, Alaska: Journal of Geophysical Research, v. 109, n. 1, p. 1-16.

Dynamic deformation of Seguam Island, Aleutian Islands, Alaska, 1993-2000: implications for magmatic and hydrothermal processes, 2004

Price, E.J., 2004, Dynamic deformation of Seguam Island, Aleutian Islands, Alaska, 1993-2000: implications for magmatic and hydrothermal processes: Journal of Geophysical Research, v. 109, n. 4, 15 p.

Variable impact of the subducted slab on Aleutian island arc magma sources; evidence from Sr, Nd, Pb, and Hf isotopes and trace element abundances, 2004

Jicha, B.R., Singer, B.S., Brophy, J.G., Fournelle, J.H., Johnson, C.M., Beard, B.L., Lapen, T.J., and Mahlen, N.J., 2004, Variable impact of the subducted slab on Aleutian island arc magma sources; evidence from Sr, Nd, Pb, and Hf isotopes and trace element abundances: Journal of Petrology, v. 45, n. 9, p. 1845-1875.

Volcanoes of the world: an illustrated catalog of Holocene volcanoes and their eruptions, 2003

Siebert, L., and Simkin, T., 2002-, Volcanoes of the world: an illustrated catalog of Holocene volcanoes and their eruptions: Smithsonian Institution, Global Volcanism Program Digital Information Series GVP-3, http://volcano.si.edu/search_volcano.cfm, unpaged internet resource.

Bibliography of information on Alaska volcanoes, 2003

Cameron, C. E., Triplehorn, J. H., and Robar, C. L., 2003, Bibliography of information on Alaska volcanoes: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication MP 131, 1 CD-ROM.
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Interferometric synthetic aperture radar studies of Alaska volcanoes, 2003

Lu, Zhong, Wicks, C. J., Dzurisin, Daniel, Power, John, Thatcher, Wayne, and Masterlark, Tim, 2003, Interferometric synthetic aperture radar studies of Alaska volcanoes: Earth Observation Magazine, v. 12, n. 3, p. 8-10.

Along-strike variation in the Aleutian Island Arc: Genesis of high Mg# andesite and implications for continental crust, 2003

Kelemen, P.B., Yogodzinski, G.M., and Scholl, D.M., 2003, Along-strike variation in the Aleutian Island Arc: Genesis of high Mg# andesite and implications for continental crust, in Eiler, J., ed., Inside the Subduction Factory: AGU Monograph 138, p. 223-276.

Variable impact of the subducted slab on Aleutian Island arc magma sources; evidence from Sr, Nd, Pb, and Hf isotopes and trace element abundances, 2002

Jicha, B. R., 2002, Variable impact of the subducted slab on Aleutian Island arc magma sources; evidence from Sr, Nd, Pb, and Hf isotopes and trace element abundances: University of Wisconsin Madison unpublished M.S. thesis, 85 p.

Historically active volcanoes of the Aleutian Arc, 2002

Schaefer, Janet, and Nye, C. J., 2002, Historically active volcanoes of the Aleutian Arc: Alaska Division of Geological & Geophysical Surveys Miscellaneous Publication MP 0123, unpaged, 1 sheet, scale 1:3,000,000. Superceded by Miscellaneous Publication 133: http://www.dggs.dnr.state.ak.us/pubs/pubs?reqtype=citation&ID=20181

Historically active volcanoes in Alaska, a quick reference, 2000

Wallace, K. L., McGimsey, R. G., and Miller, T. P., 2000, Historically active volcanoes in Alaska, a quick reference: U.S. Geological Survey Fact Sheet FS 0118-00, 2 p.
full-text PDF 162 KB
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Encyclopedia of volcanoes, 2000

Sigurdsson, Haraldur, (ed.), 2000, Encyclopedia of volcanoes: San Diego, CA, Academic Press, 1417 p.

Volcanoes of Alaska, 1998

Nye, C. J., Queen, Katherine, and McCarthy, A. M., 1998, Volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Information Circular IC 0038, unpaged, 1 sheet, scale 1:4,000,000, available at http://www.dggs.dnr.state.ak.us/pubs/pubs?reqtype=citation&ID=7043 .
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Catalog of the historically active volcanoes of Alaska, 1998

Miller, T. P., McGimsey, R. G., Richter, D. H., Riehle, J. R., Nye, C. J., Yount, M. E., and Dumoulin, J. A., 1998, Catalog of the historically active volcanoes of Alaska: U.S. Geological Survey Open-File Report 98-0582, 104 p.
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Slab melting in the Aleutians: implications of an ion probe study of clinopyroxene in primitive adakite and basalt, 1998

Yogodzinski, G. M., and Kelemen, P. B., 1998, Slab melting in the Aleutians: implications of an ion probe study of clinopyroxene in primitive adakite and basalt: Earth and Planetary Science Letters, v. 158, n. 1-2, p. 53-65.

A multichannel seismic reflection image of part of the Aleutian seismogenic zone, 1997

McGeary, S., 1997, A multichannel seismic reflection image of part of the Aleutian seismogenic zone [abs.]: Eos, v. 78, n. 46, p. 627.

Volcanoes of the Alaska Peninsula and Aleutian Islands selected photographs, 1997

Neal, Christina, and McGimsey, R. G., 1997, Volcanoes of the Alaska Peninsula and Aleutian Islands selected photographs: U.S. Geological Survey Digital Data Series DDS 0040, 1 CD-ROM.

Does fracture zone subduction increase sediment flux and mantle melting in subduction zones? Trace element evidence from Aleutian Arc basalt, 1996

Singer, B. S., Leeman, W. P., Thirwall, M. F., and Rogers, N. W., 1996, Does fracture zone subduction increase sediment flux and mantle melting in subduction zones? Trace element evidence from Aleutian Arc basalt: in Bebout, G. E., Scholl, D. W., Kirby, S. H., and Platt, J. P., (eds.), Subduction top to bottom, American Geophysical Union Geophysical Monograph 0096, p. 285-291.

Seguam, 1996

Neal, C. A., 1996, Seguam: in Annual report of the world volcanic eruptions in 1993, Bulletin of Volcanic Eruptions, v. 33, p. 90-91.
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1993 volcanic activity in Alaska: summary of events and response of the Alaska Volcano Observatory, 1996

Neal, C. A., McGimsey, R. G., and Doukas, M. P., 1996, 1993 volcanic activity in Alaska: summary of events and response of the Alaska Volcano Observatory: U.S. Geological Survey Open-File Report 96-0024, 21 p.
full-text PDF 1149 KB
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10 years of volcanic activity in Alaska: 1983-1992: A video (Pyre Peak, Akutan, Bogoslof, Westdahl, Veniaminof, Augustine, Redoubt, and Spurr volcanoes), 1995

Doukas, M. P., McGimsey, R. G., and Dorava, J. M., 1995, 10 years of volcanic activity in Alaska: 1983-1992: A video (Pyre Peak, Akutan, Bogoslof, Westdahl, Veniaminof, Augustine, Redoubt, and Spurr volcanoes): U.S. Geological Survey Open-File Report 95-0061-A, Anchorage, AK, KAKM Video, 1 videocassette.
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10 years of volcanic activity in Alaska: 1983 to 1992: a video, 1995

Doukas, M. P., McGimsey, R. G., and Dorava, J. M., 1995, 10 years of volcanic activity in Alaska: 1983 to 1992: a video: U.S. Geological Survey Open-File Report 95-61-B, 12 p.
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Volcanic activity in Alaska: Summary of events and response of the Alaska Volcano Observatory 1992, 1995

McGimsey, R. G., Neal, C. A., and Doukas, M. P., 1995, Volcanic activity in Alaska: Summary of events and response of the Alaska Volcano Observatory 1992: U.S. Geological Survey Open-File Report 95-83, 26 p.
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A video of 10 years of volcanic activity in Alaska: 1983 to 1992, 1995

Doukas, M. P., McGimsey, R. G., and Dorava, J. M., 1995, A video of 10 years of volcanic activity in Alaska: 1983 to 1992 [abs.]: Abstracts with Programs - Geological Society of America, v. 27, n. 5, p. 15.
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Quick reference to Alaska's active volcanoes and listing of historical eruptions, 1760-1994, 1995

McGimsey, R. G., and Miller, T. P., 1995, Quick reference to Alaska's active volcanoes and listing of historical eruptions, 1760-1994: U.S. Geological Survey Open-File Report 95-0520, 13 p.
Hard Copy held by AVO at FBKS - CEC file cabinet

Volcanoes of Alaska, 1995

Alaska Division of Geological & Geophysical Surveys, 1995, Volcanoes of Alaska: Alaska Division of Geological & Geophysical Surveys Information Circular IC 0038, unpaged, 1 sheet, scale 1:4,000,000.

Seguam, 1995

McGimsey, R. G., 1995, Seguam: in Annual report of the world volcanic eruptions in 1992, Bulletin of Volcanic Eruptions, v. 32, p. 87.
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Sr and Pb isotopic evidence for temporal and spatial controls on arc magmatic processes: new data from the central Aleutian Arc, 1994

Myers, J. D., Nicolaysen, K. E., and Frost, C. D., 1994, Sr and Pb isotopic evidence for temporal and spatial controls on arc magmatic processes: new data from the central Aleutian Arc [abs.]: Abstracts with Programs - Geological Society of America, v. 26, n. 7, p. 368.

Aleutian magmas in space and time, 1994

Kay, S. M., and Kay, R. W., 1994, Aleutian magmas in space and time: in Plafker, George and Berg, H. C., (eds.), The Geology of Alaska, Geological Society of America The Geology of North America series v. G-1, p. 687-722.
Hard Copy held by AVO at FBKS - CEC file cabinet

Geologic framework of the Aleutian arc, Alaska, 1994

Vallier, T. L., Scholl, D. W., Fisher, M. A., Bruns, T. R., Wilson, F. H., von Huene, Roland, and Stevenson, A. J., 1994, Geologic framework of the Aleutian arc, Alaska: in Plafker, George and Berg, H. C., (eds.), The Geology of Alaska, Geological Society of America The Geology of North America series v. G-1, p. 367-388.
Hard Copy held by AVO at FBKS - CEC file cabinet

Volcanoes of the world [2nd edition], 1994

Simkin, Tom, and Siebert, Lee, 1994, Volcanoes of the world [2nd edition]: Tucson, Arizona, Geoscience Press, 349 p.
Hard Copy held by AVO at FBKS - CEC shelf

Geothermal resources of Alaska, 1994

Miller, T. P., 1994, Geothermal resources of Alaska: in Plafker, George and Berg, H. C., (eds.), The Geology of Alaska, Geological Society of America The Geology of North America series v. G-1, p. 979-987.
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The geology, geochemistry and petrology of the recent magmatic phase of the central and western Aleutian Arc, 1994

Myers, J. D., 1994, The geology, geochemistry and petrology of the recent magmatic phase of the central and western Aleutian Arc: unpublished manuscript unpaged.
Hard Copy held by AVO at FBKS - CEC shelf

Age, character, and significance of Aleutian arc volcanism, 1994

Fournelle, J. H., Marsh, B. D., and Myers, J. D., 1994, Age, character, and significance of Aleutian arc volcanism: in Plafker, George and Berg, H. C., (eds.), The Geology of Alaska, Geological Society of America The Geology of North America Series v. G-1, p. 723-758.

Notes on Russian America, Parts II-V: Kad'iak, Unalashka, Atkha, the Pribylovs (translated by Marina Ramsay), 1994

Khlebnikov, K. T., 1994, Notes on Russian America, Parts II-V: Kad'iak, Unalashka, Atkha, the Pribylovs (translated by Marina Ramsay): Liapunova, R. G. and Fedorova, S. G., (comps.), Kingston, Ontario and Fairbanks, Alaska, The Limestone Press, 424 p.
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Aleutian arc volcanoes, 1994

Nye, C. J., 1994, Aleutian arc volcanoes: Alaska Division of Geological & Geophysical Surveys Public-Data File PDF 94-54, unpaged, 1 sheet, scale 1:2,126,841.

Aleut dictionary, Unangam Tunudgusii, an unabridged lexicon of the Aleutian, Pribilof, and Commander Islands Aleut language, 1994

Bergsland, Knut, comp., 1994, Aleut dictionary, Unangam Tunudgusii, an unabridged lexicon of the Aleutian, Pribilof, and Commander Islands Aleut language: University of Alaska Fairbanks, Alaska Native Language Center, 739 p.

Geothermal resources of the Aleutian Arc, 1993

Motyka, R. J., Liss, S. A., Nye, C. J., and Moorman, M. A., 1993, Geothermal resources of the Aleutian Arc: Alaska Division of Geological & Geophysical Surveys Professional Report PR 0114, 17 p., 4 sheets, scale 1:1,000,000.
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Plagioclase zoning in mid-Pleistocene lavas from the Seguam volcanic center, central Aleutian arc, Alaska, 1993

Singer, B. S., Pearce, T. H., Kolisnik, A. M., and Myers, J. D., 1993, Plagioclase zoning in mid-Pleistocene lavas from the Seguam volcanic center, central Aleutian arc, Alaska: American Mineralogist, v. 78, n. 1-2, p. .143-157.

Plagioclase phenocryst compositions and zoning patterns: the Finch Cove Formation, Seguam volcanic center, central Aleutian Arc, 1993

Myers, J. D., 1993, Plagioclase phenocryst compositions and zoning patterns: the Finch Cove Formation, Seguam volcanic center, central Aleutian Arc [abs.]: Eos, v. 74, n. 16, p. 348.

Plagioclase zonation in a basalt to rhyodacite eruptive suite, Seguam Island, Alaska: observations by Nomarski contrast interference, 1993

Singer, B. S., and Pearce, T. H., 1993, Plagioclase zonation in a basalt to rhyodacite eruptive suite, Seguam Island, Alaska: observations by Nomarski contrast interference: The Canadian Mineralogist, v. 31, n. 2, p. 459-466.

Seguam, 1993

Smithsonian Institution, 1993, Seguam: Global Volcanism Network Bulletin v. 18, n. 05, unpaged.

Seguam, 1993

Smithsonian Institution, 1993, Seguam: Global Volcanism Network Bulletin v. 18, n. 07, unpaged.

Seguam, 1993

Smithsonian Institution, 1993, Seguam: Global Volcanism Network Bulletin v. 18, n. 08, unpaged.

Holocene volcanoes of the Aleutian Arc, Alaska, 1993

March, G. D., 1993, Holocene volcanoes of the Aleutian Arc, Alaska: Alaska Division of Geological & Geophysical Surveys Public-Data File PDF 93-85, unpaged, 1 sheet, scale 1:2,000,000.

Oxygen isotope constraints on the petrogenesis of Aleutian arc magmas, 1992

Singer, B. S., O'Neil, J. R., and Brophy, J. G., 1992, Oxygen isotope constraints on the petrogenesis of Aleutian arc magmas: Geology, v. 20, n. 4, p. 367-370.

Mid-Pleistocene basalt from the Seguam volcanic center, central Aleutian Arc, Alaska: local lithospheric structures and source variability in the Aleutian Arc, 1992

Singer, B. S., Myers, J. D., and Frost, C. D., 1992, Mid-Pleistocene basalt from the Seguam volcanic center, central Aleutian Arc, Alaska: local lithospheric structures and source variability in the Aleutian Arc: Journal of Geophysical Research, v. 97, n. B4, p. 4561-4578.
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Plagioclase zoning in mid-Pleistocene basalt to rhyodacite lavas from the Seguam volcanic center, central Aleutian Arc, 1992

Singer, B. S., Pearce, T. H., Kolisnik, A. M., and Myers, J. D., 1992, Plagioclase zoning in mid-Pleistocene basalt to rhyodacite lavas from the Seguam volcanic center, central Aleutian Arc [abs.]: Eos, v. 73, n. 14, p. 353.

Mid-Pleistocene lavas from the Seguam volcanic center, central Aleutian arc: closed-system fractional crystallization of a basalt to rhyodacite eruptive suite, 1992

Singer, B. S., Myers, J. D., and Frost, C. D., 1992, Mid-Pleistocene lavas from the Seguam volcanic center, central Aleutian arc: closed-system fractional crystallization of a basalt to rhyodacite eruptive suite: Contributions to Mineralogy and Petrology, v. 110, p. 87-112.
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Seguam, 1992

Smithsonian Institution, 1992, Seguam: Global Volcanism Network Bulletin v. 17, n. 12, unpaged.

Mid-Pleistocene basalts from the Seguam Volcanic Center, central Aleutian Arc, Alaska: Local lithospheric structures and source variability in the Aleutian Arc, 1991

Singer, B. S., Myers, J. D., and Frost, C. D., 1991, Mid-Pleistocene basalts from the Seguam Volcanic Center, central Aleutian Arc, Alaska: Local lithospheric structures and source variability in the Aleutian Arc [abs.]: Abstracts with Programs - Geological Society of America, v. 23, n. 5, p. A330.

Late-Pleistocene magmatic activity at the Seguam volcanic center, central Aleutian Arc, Alaska: the Finch Cove Formation, 1991

Myers, J. D., and Singer, B. S., 1991, Late-Pleistocene magmatic activity at the Seguam volcanic center, central Aleutian Arc, Alaska: the Finch Cove Formation [abs.]: Abstracts with Programs - Geological Society of America, v. 23, n. 5, p. 330-331.

Intra-arc extension and magmatic evolution in the central Aleutian arc, Alaska, 1990

Singer, B. S., and Myers, J. D., 1990, Intra-arc extension and magmatic evolution in the central Aleutian arc, Alaska: Geology, v. 18, n. 11, p. 1050-1053.

Petrology and geochemistry of mid-Pleistocene lavas from Seguam Island, central Aleutian Islands, Alaska: implications for the chemical and physical evolution of oceanic island arc magmatic centers, 1990

Singer, B. S., 1990, Petrology and geochemistry of mid-Pleistocene lavas from Seguam Island, central Aleutian Islands, Alaska: implications for the chemical and physical evolution of oceanic island arc magmatic centers: University of Wyoming Ph.D. dissertation, 205 p.

Mid-Pleistocene low-K lavas from the Seguam Island volcanic center, central Aleutian Arc, Alaska I: The effect of intra-arc extension on low pressure liquid lines of descent, 1990

Singer, B. S., Myers, J. D., and Frost, C. D., 1990, Mid-Pleistocene low-K lavas from the Seguam Island volcanic center, central Aleutian Arc, Alaska I: The effect of intra-arc extension on low pressure liquid lines of descent [abs.]: Abstracts with Programs - Geological Society of America, v. 22, n. 7, p. 165-166.

Volcanoes of North America: United States and Canada, 1990

Wood, C. A., and Kienle, Juergen, (eds.), 1990, Volcanoes of North America: United States and Canada: New York, Cambridge University Press, 354 p.
Hard Copy held by AVO at FBKS - CEC shelf

Major and trace element characteristics of lavas from Seguam Island, central Aleutian Islands, Alaska, 1988

Singer, B. S., and Myers, J. D., 1988, Major and trace element characteristics of lavas from Seguam Island, central Aleutian Islands, Alaska: Abstracts with programs - Geological Society of America, v. 20, p. 196.

Seguam Island, central Aleutian Islands: I. Geologic field relations, 1987

Myers, J. D., and Singer, B. S., 1987, Seguam Island, central Aleutian Islands: I. Geologic field relations [abs.]: Eos, v. 68, n. 44, p. 1525.
Hard Copy held by AVO at FBKS - CEC file cabinet

Map showing distribution, composition, and age of Late Cenozoic volcanic centers in Alaska, 1986

Luedke, R. G., and Smith, R. L., 1986, Map showing distribution, composition, and age of Late Cenozoic volcanic centers in Alaska: U.S. Geological Survey Miscellaneous Investigations Series Map I 1091-F, unpaged, 3 sheets, scale 1:1,000,000.

The Aleutians, 1982

Marsh, B. D., 1982, The Aleutians: in Thorpe, R. S., (ed.), Andesites: orogenic andesites and related rocks, Chichester, United Kingdom, John Wiley & Sons, p. 99-114.
Hard Copy held by AVO at FBKS - CEC file cabinet

Volcanoes of the world, 1981

Simkin, Tom, Siebert, Lee, McClelland, Lindsay, Bridge, David, Newhall, Christopher, and Latter, J. H., 1981, Volcanoes of the world: Stroudsburg, PA, Hutchinson Publishing Company, 233 p.

Geothermal energy resources of Alaska, 1980

Turner, D. L., Forbes, R. B., Albanese, Mary, Macbeth, Joyce, Lockhart, A. B., and Seed, S. M., 1980, Geothermal energy resources of Alaska: University of Alaska Fairbanks Geophysical Institute Report UAG-R 279, 19 p., 3 sheets, scale 1 at 1:2,500,000.

Igneous-related geothermal systems, 1979

Smith, R. L., and Shaw, H. R., 1979, Igneous-related geothermal systems: in Muffler, L. J. P., (ed.), Assessment of geothermal resources of the United States 1978, U.S. Geological Survey Circular C 790, p. 12-17.

Assessment of geothermal resources of the United States--1978, 1979

Muffler, L. J. P., 1979, Assessment of geothermal resources of the United States--1978: U.S. Geological Survey Circular C 0790, 163 p.
Hard Copy held by AVO at FBKS - CEC shelf

Comprehensive tables giving physical data and thermal energy estimates for young igneous systems of the United States, 1978

Smith, R. L., Shaw, H. R., Luedke, R. G., and Russell, S. L., 1978, Comprehensive tables giving physical data and thermal energy estimates for young igneous systems of the United States: U.S. Geological Survey Open-File Report 78-0925, p. 1-25.
Hard Copy held by AVO at FBKS - CEC shelf

Seguam, 1977

Smithsonian Institution, 1977, Seguam: Scientific Event Alert Network Bulletin v. 02, n. 03, unpaged.

Volcano in Aleutians is spotted by sailors, 1977

Unknown, 1977, Volcano in Aleutians is spotted by sailors: Anchorage Times, March 7, 1977, pages unknown.

Account of a voyage of discovery to the north-east of Siberia, the frozen ocean, and the north-east sea, 1969

Sarychev, G.A., translated from Russian in 1806 and 1807, republished 1969, Account of a voyage of discovery to the north-east of Siberia, the frozen ocean, and the north-east sea: New York, Da Capo Press, 110 p.

Alaska Peninsula-Aleutian Islands, 1958

Powers, H. A., 1958, Alaska Peninsula-Aleutian Islands: in Williams, H., (ed.), Landscapes of Alaska, Los Angeles, CA, University of California Press, p. 61-75.

Volcanic activity in the Aleutian Arc, 1950

Coats, R. R., 1950, Volcanic activity in the Aleutian Arc: U.S. Geological Survey Bulletin 0974-B, p. 35-49, 1 sheet, scale 1:5,000,000.
plate 1 PDF 819 KB
full-text PDF 783 KB
Hard Copy held by AVO at FBKS - CEC shelf

United States coast pilot, Alaska Part 2, Yakutat Bay to Arctic Ocean, 1947

U.S. Department of Commerce, and Coast and Geodetic Survey, 1947, United States coast pilot, Alaska Part 2, Yakutat Bay to Arctic Ocean: Washington DC, United States Government Printing Office, 659 p.

Volcanoes declare war: logistics and strategy of Pacific volcano science, 1945

Jaggar, T. A., 1945, Volcanoes declare war: logistics and strategy of Pacific volcano science: Honolulu, Paradise of the Pacific, Ltd, 166 p.

The Aleutian Islands, 1927

Jaggar, T. A., 1927, The Aleutian Islands: The Volcano Letter, v. 116, p. 1.
full-text PDF 376 KB
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Katalog der geschichtlichen vulkanausbruche, 1917

Sapper, Karl, 1917, Katalog der geschichtlichen vulkanausbruche: Strassburg, Germany, Karl J. Trubner, 358 p.
Hard Copy held by AVO at FBKS - CEC file cabinet

The volcanoes of Alaska, 1910

Cordeiro, F. J. B., 1910, The volcanoes of Alaska: Appalachia, v. 12, p. 130-135.
Hard Copy held by AVO at FBKS - CEC file cabinet

Journal of the technology expedition to the Aleutian Islands, 1907, 1908

Jaggar, T. A., 1908, Journal of the technology expedition to the Aleutian Islands, 1907: The Technology Review, v. 10, n. 1, p. 1-37.
Hard Copy held by AVO at FBKS - CEC file cabinet

An island rises from the sea to annex itself, 1906

Dunn, Robert, 1906, An island rises from the sea to annex itself: The Washington Post, Washington, D.C., October 14, 1906, p. 44.
Hard Copy held by AVO at FBKS - CEC file cabinet

Reported volcanic eruptions in Alaska, Puget Sound, etc., 1690-1896, 1898

Plummer, F. G., 1898, Reported volcanic eruptions in Alaska, Puget Sound, etc., 1690-1896: in Holden, E. S., (ed.), A Catalogue of Earthquakes on the Pacific Coast 1769-1897, Smithsonian Institution Miscellaneous Collections 1087, City of Washington D.C., Smithsonian Institution, p. 24-27.
Hard Copy held by AVO at FBKS - CEC file cabinet

Reconnaissance of the gold fields of southern Alaska with some notes on general geology, 1898

Becker, G. F., 1898, Reconnaissance of the gold fields of southern Alaska with some notes on general geology: U.S. Geological Survey Annual Report 0018, p. 1-86, 6 sheets, scale unknown.
full-text PDF 1.5 MB
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The volcanic region of Alaska, 1884

Petroff, Ivan, 1884, The volcanic region of Alaska: in Population, Industries, and Resources of Alaska, Washington DC, Government Printing Office, p. 93-96.
full-text PDF 10.9 MB
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Alaska and its resources, 1870

Dall, W. H., 1870, Alaska and its resources: Boston, Lee and Shepard, 627 p.
Hard Copy held by AVO at FBKS - CEC file cabinet

Documents sur les tremblements de terre et les phenomenes volcaniques des iles Aleutiennes, de la peninsule d'Aljaska et de la cote no. d'Amerique, Extrait des memoires de l'Academie des sciences, arts et belles-lettres de Dijon, 1865, 1866

Perrey, Alexis, 1866, Documents sur les tremblements de terre et les phenomenes volcaniques des iles Aleutiennes, de la peninsule d'Aljaska et de la cote no. d'Amerique, Extrait des memoires de l'Academie des sciences, arts et belles-lettres de Dijon, 1865: Dijon, J.E. Rabutut, 131 p.
Hard Copy held by AVO at FBKS - CEC file cabinet

Grewingk's geology of Alaska and the Northwest Coast of America [edited by Marvin W. Falk, translation by Fritz Jaensch published 2003], 1850

Grewingk, Constantine, 1850, Grewingk's geology of Alaska and the Northwest Coast of America [edited by Marvin W. Falk, translation by Fritz Jaensch published 2003]: Rasmuson Library Historical Translation Series 11, Fairbanks, AK, The University of Alaska Press, 242 p.
Hard Copy held by AVO at FBKS - CEC shelf

Past volcanic activity in the Aleutian arc,

Coats, R. R., Past volcanic activity in the Aleutian arc: U.S. Geological Survey Volcano Investigations Report 1, 18 p.
full-text PDF 22.3 MB
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Volcano observations,

Kienle, Juergen (comp.), Volcano observations: Notes about volcanoes and volcanic eruptions collected, made, and stored by Juergen Kienle, on file at University of Alaska Fairbanks, Geophysical Institute, unpublished, unpaged.