Borrel, G., Jézéquel, D., Biderre-Petit, C., Morel-Desrosiers, N., Morel, J., Peyret, P., Fonty, G., and Lehours, A.: Production and consumption of methane in freshwater lake ecosystems, Res. Microbiol., 162, 832–847, https://doi.org/10.1016/j.resmic.2011.06.004, 2011.
Brigham-Grette, J., Melles, M., Minyuk, P., and Scientific Party: Overview and significance of a 250 ka paleoclimate record from El'gygytgyn Crater Lake, NE Russia, J. Paleolimnol., 37, 1–16, https://doi.org/10.1007/s10933-006-9017-6, 2007.
Chlachula, J., Evans, M. E., and Rutter, N. W.: A magnetic investigation of a Late Quaternary loess/palaeosol record in Siberia, Geophys. J. Int., 132, 128–132, https://doi.org/10.1046/j.1365-246x.1998.00399.x, 1998
Day, R., Fuller, M., and Schmidt, V.: Hysteresis Properties of Titanomagnetites - Grain-Size and Compositional Dependence, Phys. Earth Planet. Int., 13, 260–267, https://doi.org/10.1016/0031-9201(77)90108-X, 1977.
Demory, F., Nowaczyk, N. R., Witt, A., and Oberhänsli, H.: High-resolution magnetostratigraphy of late quaternary sediments from Lake Baikal, Siberia: timing of intracontinental paleoclimatic responses, Global Planet. Change, 46, 167–186, https://doi.org/10.1016/j.gloplacha.2004.09.016, 2005.
Dunlop, D. J.: Theory and application of the Day plot (Mrs/Ms versus Hcr/Hc) 1. Theoretical curves and tests using titanomagnetite data, J. Geophys. Res., 107, 2056, https://doi.org/10.1029/2001JB000486, 2002a.
Dunlop, D. J.: Theory and application of the Day plot (Mrs/Ms versus Hcr/Hc) 2. Application to data for rocks, sediments, and soils, J. Geophys. Res., 107, 2057, https://doi.org/10.1029/2001JB000487, 2002b.
Evans, M. E. and Rutter, N. W.: A magnetic investigation of a late Quaternary loess/palaeosol record in Siberia, Geophys. J. Int., 132, 128–132, 1998.
Federov, G., Bolshijanov, D. J., and Schwamborn, G.: Hydro- and sedimentological-balance research from Lake Elgygytgyn, Chukotka, in: The System of the Laptev Sea and Adjacent Arctic Seas Current Status and History of Development, edited by: Kassens, K., Lisitzin, A. P., Thiede, J., Polykova, Y. I., Timokhov, L. A., and Frolov, I. E., Moscow University Press, Moscow, Russia, 9 pp., 2009.
Fedorov, G., Nolan, M., Brigham-Grette, J., Bolshiyanov, D., Schwamborn, G., and Juschus, O.: Lake El'gygytgyn water and sediment balance components overview and its implications for the sedimentary record, Clim. Past Discuss., 8, 3977–4001, https://doi.org/10.5194/cpd-8-3977-2012, 2012.
Forman, S., Pierson, J., Gómez, J., Brigham-Grette, J., Nowaczyk, N., and Melles, M.: Luminescence geochronology for sediments from Lake El'gygytgyn, northeast Siberia, Russia: constraining the timing of paleoenvironmental events for the past 200 ka, J. Paleolimnol., 37, 77–88, https://doi.org/10.1007/s10933-006-9024-7, 2007.
Frank, U., Nowaczyk, N. R., Minyuk, P., Vogel, H., Ros'{e}n, P., and Melles, M.: A 350 kyr record of climate change from Lake El'gygytgyn, Far East Russian Arctic: refining the pattern of climate modes by means of cluster analysis, Clim. Past Discuss., 8, 5109–5132, https://doi.org/10.5194/cpd-8-5109-2012, 2012.
Frederichs, T., von Dobeneck, T., Bleil, U., and Dekkers, M. J.: Towards the identification of siderite, rhodochrosite, and vivianite in sediments by their low-temperature magnetic properties, Phys. Chem. Earth, 28, 669–679, 2003.
Geiss, C. E. and Banerjee, S. K.: A multi-parameter rock magnetic record of the last glacial–interglacial paleoclimate from south-central Illinois, USA, Earth Planet. Sc. Lett., 152, 203–216, https://doi.org/10.1016/S0012-821X(97)00133-7, 1997.
Holland, A. R., Wilkie, K., Petsch, S., Burns, S., and Brigham-Grette, J.: Exploring bulk and 5 compound-specific isotopes in Lake El'gygytgyn sediments for evidence of anoxia and methane cycling over the Past 50 ka, Clim. Past Discuss., in preparation, 2013.
Kristensen, E. and Holmer, M.: Decomposition of plant materials in marine sediment exposed to different electron acceptors (O
2, NO
3-, and SO
42-), with emphasis on substrate origin, degradation kinetics, and the role of bioturbation, Geochim. Cosmochim. Ac., 65, 419–433, https://doi.org/10.1016/S0016-7037(00)00532-9, 2001.
Langereis, C. G., Dekkers, M. J., de Lange, G. J., Paterne, M., and van Santvoort, P. J. M.: Magnetostratigraphy and astronomical calibration of the last 1.1 Myr from an eastern Mediterranean piston core and dating of short events in the Brunhes, Geophys. J. Int., 129, 75–94, https://doi.org/10.1111/j.1365-246X.1997.tb00938.x, 1997.
Layer, P. W.: Argon-40/argon-39 age of the El'gygytgyn impact event, Chukotka, Russia, Meteorit. Planet. Sci., 35, 591–599, https://doi.org/10.1111/j.1945-5100.2000.tb01439.x, 2000.
Lehmann, M. F., Bernasconi, S. M., Barbieri, A., and McKenzie, J. A.: Preservation of organic matter and alteration of its carbon and nitrogen isotope composition during simulated and in situ early sedimentary diagenesis, Geochim. Cosmochim. Ac., 66, 3573–3584, 2002.
Lozhkin, A. V., Anderson, P. M., Matrosova, T. V., and Minyuk, P. S.: The pollen record from El'gygytgyn Lake: implications for vegetation and climate histories of northern Chukotka since the late middle Pleistocene, J. Paleolimnol., 37, 135–153, https://doi.org/10.1007/s10933-006-9018-5, 2006.
Maher, B. A.: The magnetic properties of Quaternary aeolian dusts and sediments, and their palaeoclimatic significance, Aeolian Research, 3, 87–144, https://doi.org/10.1016/j.aeolia.2011.01.005, 2011.
Maher, B. A. and Thompson, R.: Paleoclimatic significance of the mineral magnetic record of the Chinese loess and paleosols, Quaternary Res., 37, 155–170, https://doi.org/10.1016/0033-5894(92)90079-X, 1992.
Melles, M., Brigham-Grette, J., Glushkova, O. Y., Minyuk, P., Nowaczyk, N., and Hubberten, W.: Sedimentary geochemistry of a pilot core from Lake El'gygytgyn – a sensitive record of climate variability in the East Siberian Arctic during the past three climate cycles, J. Paleolimnol., https://doi.org/10.1007/s10933-006-9025-6, 2007.
Melles, M., Brigham-Grette, J., Minyuk, P. S., Koeberl, C., Andreev, A., Cook, T., Fedorov, G., Gebhardt, C., Haltia-Hovi, E., Kukkonen, M., Nowaczyk, N., Schwamborn, G., Wennrich, V., and El'gygytgyn Sci. Party: The Lake El'gygytgyn Scientific Drilling Project – Conquering Arctic challenges through continental drilling, Sci. Drill., 11, 29–40, https://doi.org/10.2204/iodp.sd.11.03.2011, 2011.
Melles, M., Brigham-Grette, J., Minyuk, P. S., Nowaczyk, N. R., Wennrich, V., DeConto, R., Anderson, P. M., Andreev, A. A., Coletti, A., Cook, T. L., Haltia-Hovi, E., Kukkonen, M., Lozhkin, A. V., Rosen, P., Tarasov, P., Vogel, H., and Wagner, B.: 2.8 million years of Arctic climate change from Lake El'gygytgyn, NE Russia, Science, 337, 315–320, https://doi.org/10.1126/science.1222135, 2012.
Minyuk, P. S., Brigham-Grette, J., Melles, M., Borkhodoev, V. Y., and Glushkova, O. Y.: Inorganic geochemistry of El'gygytgyn Lake sediments (northeastern Russia) as an indicator of paleomagnetic change for the last 250 kyr, J. Paleolimnol., 37, 123–133, 2007.
Minyuk, P. S., Subbotnikova, T. V., Brown, L. L., and Murdock, K. J.: Thermomagnetic properties of vivianite nodules, Lake El'gygytgyn, Northeast Russia, Clim. Past Discuss., 8, 4989–5027, https://doi.org/10.5194/cpd-8-4989-2012, 2012.
Nolan, M. and Brigham-Grette, J.: Basic hydrology, limnology, and meterology of modern Lake E'gygytgyn, Siberia, J. Paleolimnol., 37, 17–35, https://doi.org/10.1007/s10933-006-9020-y, 2007.
Nolan, M., Liston, G., Prokein, P., Brigham-Grette, J., Sharpton, V. L., and Huntzinger, R.: Analysis of lake ice dynamics and morphology on Lake El'gygytgyn, NE Siberia, using synthetic aperture radar (SAR) and Landsat, J. Geophys. Res., 107, 8162, https://doi.org/10.1029/2001JD000934, 2002.
Nowaczyk, N. R., Minyuk, P., Melles, M., Brigham-Grette, J., Glushkova, O., Nolan, M., Lozhkin, A. V., Stetsenko, T. V., Andersen, P. M., and Forman, S. L.: Magnetostratigraphic results from impact crater Lake El'gygytgyn, northeastern Siberia: a 300 kyr long high-resolution terrestrial palaeoclimatic record from the Arctic, Geophys. J. Int., 150, 109–126, https://doi.org/10.1046/j.1365-246X.2002.01625.x, 2002.
Nowaczyk, N. R., Melles, M., and Minyuk, P.: A revised age model for core PG1351 from Lake El'gygytgyn, Chukotka, based on magnetic susceptibility variations tuned to northern hemisphere insolation variations, J. Paleolimnol., 37, 65–76, https://doi.org/10.1007/s10933-006-9023-8, 2007.
Nowaczyk, N. R., Haltia-Hovi, E. M., Ulbricht, D., Wennrich, V., Kukkonen, M., Rosen, P., Vogel, H., Meyer-Jacob, C., Andreev, A., and Lozhkin, A. V.: Chronology of lake El'gygytgyn sediments, Clim. Past Discuss., in preparation, 2013.
Schwamborn, G., Meyer, H., Fedorov, G., Schirrmeister, L., and Hubberten, H.-W.: Ground ice and slope sediments archiving late quaternary paleoenvironment and paleoclimate signals at the margins of El'gygytgyn Impact Crater, NE Siberia, Quaternary Res., 66, 259–272, https://doi.org/10.1016/j.yqres.2006.06.007, 2006.
Snowball, I. F.: Geochemical control of magnetite dissolution in subarctic lake sediments and the implications for environmental magnetism, J. Quaternary Sci., 8, 339–346, https://doi.org/10.1002/jqs.3390080405, 1993.
Tudryn, A., Tucholka, P., Gibert, E., Gasse, F., and Wei, K.: A late Pleistocene and Holocene mineral magnetic record from sediments of Lake Aibi, Dzungarian Basin, NW China, J. Paleolimnol., 44, 109–121, https://doi.org/10.1007/s10933-009-9391-y, 2010.
Vlag, P. A., Oches, E. A., Banerjee, S. K., and Solheid P. A.: The paleoenvironmental-magnetic record of the Gold Hill Steps loess section in central Alaska, Phys. Chem. Earth Pt. A, 24, 779–783, 1999.
Wilkie, K. M.: Compound-Specific Hydrogen Isotopes of Lipid Biomarkers in Lake El'gygytgyn, Ne Russia, Ph.D. thesis, University of Massachusetts Amherst, USA, 2012.
Wilkie, K. M. K., Chapligin, B., Meyer, H., Burns, S., Petsch, S., and Brigham-Grette, J.: Modern isotope hydrology and controls on δD of plant leaf waxes at Lake El'gygytgyn, NE Russia, Clim. Past Discuss., 8, 3719–3764, https://doi.org/10.5194/cpd-8-3719-2012, 2012.
Wolfers, P., Fillion, G., Ouladdiaf, B., Ballou, R., and Rochette, P.: The pyrrhotite 32 K magnetic transition, Sol. St. Phen., 170, 174–179, 2011.