Millennial-scale fluctuations of palaeo-ice margin at the southern fringe of the last Fennoscandian Ice Sheet (2024)

Aitken, M. J.: Thermoluminescence Dating, Academic Press, London., 359 pp., ISBN0120463806, 1985. 

Arnold, M., Merchel, S., Bourlès, D. L., Braucher, R., Benedetti, L., Finkel, R. C., Aumaître, G., Gottdang, A., and Klein, M.: The French accelerator mass spectrometry facility ASTER: Improved performance and developments, Nucl. Instrum.Meth. B, 268, 1954–1959, https://doi.org/10.1016/j.nimb.2010.02.107, 2010. 

Balco, G., Stone, J. O., Lifton, N. A., and Dunai, T. J.: A complete and easily accessible means of calculating surface exposure ages or erosion rates from 10Be and 26Al measurements, Quat. Geochronol., 3, 174–195, https://doi.org/10.1016/j.quageo.2007.12.001, 2008. 

Blomdin, R., Stroeven, A. P., Harbor, J. M., Lifton, N. A., Heyman, J., Gribenski, N., Petrakov, Caffee, M. W., Ivanov, M. N., Hättestrand, C., Rogozhina, I., and Usubaliev, R.: Evaluating the timing of former glacier expansions in the Tian Shan: A key step towards robust spatial correlations, Quaternary Sci. Rev., 153, 78–96, https://doi.org/10.1016/j.quascirev.2016.07.029, 2016. 

Borchers, B., Marrero, S., Balco, G., Caffee, M., Goehring, B., Lifton, N., Nishiizumi, K., Philips, F., Schaefer, J., and Stone, J.: Geological calibration of spallation production rates in the CRONUS-Earth project, Quat. Geochronol., 31, 188–198, https://doi.org/10.1016/j.quageo.2015.01.009, 2016. 

Bortolot, V. J.: A new modular high capacity OSL reader system, Radiat. Meas., 32, 751–757, https://doi.org/10.1016/S1350-4487(00)00038-X, 2000. 

Braucher, R., Guillou, V., Bourlès, D. L., Arnold, M., Aumaître, G., Keddadouche, K., and Nottoli, E.: Preparation of ASTER in-house 10Be/9Be standard solutions, Nucl.Instrum. Meth. B, 361, 335–340, https://doi.org/10.1016/j.nimb.2015.06.012, 2015. 

Brodzikowski, K. and van Loon, A. J.: A systematic classification of glacial and periglacial environments, facies and deposits, Earth Sci. Rev., 24, 297–381, https://doi.org/10.1016/0012-8252(87)90061-4, 1987. 

Bronk Ramsey, C.: Bayesian analysis of radiocarbon dates, Radiocarbon, 51, 337–360, https://doi.org/10.1017/S0033822200033865, 2009a. 

Bronk Ramsey, C.: Dealing with outliers and offsets in radiocarbon dating, Radiocarbon, 51, 1023–1045, https://doi.org/10.1017/S0033822200034093, 2009b. 

Chmeleff, J., von Blanckenburg, F., Kossert, K., and Jakob, D.: Determination of the 10Be half-life by multicollector ICP-MS and liquid scintillation counting, Nucl. Instrum. Meth. B, 268, 192–199, https://doi.org/10.1016/j.nimb.2009.09.012, 2010. 

Chiverrell, R. C., Thrasher, I. M., Thomas, G. S. P., Lang, A., Scourse, J. D., van Landeghem, K. J. J., Mccarroll, D., Clark, C. D., O'Cofaigh, C., Evans, D. J. A., and Ballantyne, C. K.: Bayesian modelling the retreat of the Irish Sea Ice Stream, J. Quaternary Sci., 28, 200–209, https://doi.org/10.1002/jqs.2616, 2013. 

Clark, C. D., Sejrup, H. P., Bigg, G., Stocker, M., Lonergan, L., Raunholm, S., and Haflidason, H.: Did the punctuated demise of glacial ice in the North Sea affect thermohaline circulation of the ocean?, Eos Trans. AGU, 85, 293, https://doi.org/10.1029/2004EO310006, 2004. 

Clark, P. U., Alley, R. B., and Pollard, D.: Northern Hemisphere Ice-Sheet Influences on Global Climate Change, Science, 286, 1104–1111, https://doi.org/10.1126/science.286.5442.1104, 1999. 

Clayton, L., Attig, J. W., and Mickleson, D. M.: Tunnel channels formed in Wisconsin during the last glaciations, inn: Glacial Processes Past and Present, edited by: Mickelson, D. M. and Attig, J. W., Geological Society of America Special Paper, 337, 69–82, 1999. 

Davis, B. J.: Cryospheric Geomorphology: Dating Glacial Landforms II: Radiometric Techniques, in: Treatise on Geomorphology (Second Edition), edited by: Shroder, J. F., Academic Press, 249–280, https://doi.org/10.1016/B978-0-12-818234-5.00040-7, 2022. 

Dzierżek, J. and Zreda, M.: Timing and style of deglaciation of north-eastern Poland from cosmogenic 36Cl dating of glacial and glaciofluvial deposits, Geol. Q., 51, 203–216, 2007. 

Ehlers, J., Grube, A., Stephan, H.-J., and Wansa, S.: Pleistocene glaciations of north Germany – new results, in: Quaternary Glaciations – Extent and Chronology: A Closer Look, edited by: Ehlers, J., Gibbard, P. L., and Hughes, P. D., Elsevier, Amsterdam, 149–162, https://doi.org/10.1016/B978-0-444-53447-7.00013-1, 2011. 

Fuchs, M. and Owen, L. A.: Luminescence dating of glacial and associated sediments: review, re-commendations and future directions, Boreas, 37, 636–659, https://doi.org/10.1111/j.1502-3885.2008.00052.x, 2008. 

Fyke, J. G., Sergienko, O. V., Lofverstrom, M., Price, S. F., and Lenaerts, J.: An overview of interactions and feedbacks between ice sheets and the Earth system, Rev. Geophys., 56, 361–408, https://doi.org/10.1029/2018RG000600, 2018. 

Galbraith, R. F., Roberts, R. G., Laslett, G. M., Yoshida, H., and Olley, J. M.: Optical dating of single and multiple grains of quartz from Jinminum Rock Shelter, Northern 12 Australia. Part I, experimental design and statistical models, Archaeometry, 41, 1835–1857, https://doi.org/10.1111/j.1475-4754.1999.tb00988.x, 1999. 

Gałązka, D.: Detailed Geological Map of Poland at the scale 1:50 000, sheet Iława, CAG PIG-PIB, Warszawa, ISBN978-83-7538-937-1, 2003. 

Gałązka, D.: Detailed Geological Map of Poland at the scale 1:50 000, sheet Lubawa, CAG PIG-PIB, Warszawa, ISBN978-83-7538-963-0, 2006. 

Gałązka, D.: Detailed Geological Map of Poland at the scale 1:50,000, sheet Rybno, CAG PIG-PIB, Warszawa, ISBN978-83-7863-810-0, 2009. 

Gałązka, D. and Marks, L.: Detailed Geological Map of Poland at the scale 1:50 000, sheet Dąbrówno., CAG PIG-PIB, Warszawa, ISBN978-83-7863-101-9, 1997. 

Gałązka, D., Rychel, J., and Krysiak, Z.: Glaciotectonic structures and dynamics of Weichselian ice-sheet, western slope of Lubawa Hummock, Prace Państwowego Instytutu Geologicznego, 194, 27–34, 2009 (in Polish). 

Greenwood, S. L., Clark, C. D., and Hughes, A. L. C.: Formalising an inversion methodology for reconstructing ice-sheet retreat patterns from meltwater channels: application to the British Ice Sheet, J. Quaternary Sci., 22, 637–645, https://doi.org/10.1002/jqs.1083, 2007. 

Greve, R. and Blatter, H.: Dynamics of Ice Sheets and Glaciers. Advances in Geophysical and Environmental Mechanics and Mathematics, Springer, Berlin, Heidelberg, https://doi.org/10.1007/978-3-642-03415-2, 2009. 

Guerin, G., Mercier, N., and Adamiec, G.: Dose-rate conversion factors: update, Ancient TL, 29, 5–8, 2011. 

Hahn, L., Ummenhofer, C. C., and Kwon Y.-O.: North Atlantic Natural Variability Modulates Emergence of Widespread Greenland Melt in a Warming Climate, Geophys. Res. Lett., 45, 9171–9178, https://doi.org/10.1029/2018GL079682, 2018. 

Heyman, J., Stroeven, A. P., Harbor, J. M., and Caffee, M. W.: Too young or too old: Evaluating cosmogenic exposure dating based on an analysis of compiled boulder exposure ages, Earth Planet. Sc. Lett., 302, 71–80, https://doi.org/10.1016/j.epsl.2010.11.040, 2011. 

Hughes, A. L. C., Winsborrow, M. C. M., and Greenwood, S. L.: European Ice Sheet Complex evolution during the Last Glacial Maximum (29–19 ka), in: European Glacial Landscapes, edited by: Palacios, D., Hughes, P. D., García-Ruiz, J. M., and Andrés, N., Maximum Extent of Glaciations, Elsevier, 361–372, https://doi.org/10.1016/B978-0-12-823498-3.00038-8, 2022. 

King, G. E., Robinson, R. A. J., and Finch, A. A.: Towards successful OSL sampling strategies in glacial environments: deciphering the influence of depositional processes on bleaching of modern glacial sediments from Jostedalen, Southern Norway, Quaternary Sci. Rev., 89, 94–107, https://doi.org/10.1016/j.quascirev.2014.02.001, 2014. 

Korschinek, G., Bergmaier, A., Faestermann, T., Gerstmann, U. C., Knie, K., Rugel, G., Wallner, A., Dillmann, I., Dollinger, G., and von Gostomski, C. L.: A new value for the half-life of 10Be by Heavy-Ion Elastic Recoil Detection and liquid scintillation counting, Nucl. Instrum. Meth. B, 268, 187–191, https://doi.org/10.1016/j.nimb.2009.09.020, 2010. 

Kozarski, S.: Deglaciation of northwestern Poland: environmental conditions and geosystem transformation (20 ka–10 ka BP), Dokumentacja Geograficzna, 1, 1–82, 1995 (in Polish with English summary). 

Kreutzer, S., Schmidt, C., Fuchs, M. C., Dietze, M., Fischer, M., and Fuchs, M.: Introducing an R package for luminescence dating analysis, Ancient TL, 30, 1–8, 2012. 

Kurjański, B., Rea, B. R., Spangnolo, M., Cornwell, D. G., Howell, J., and Archer, S.: A conceptual model for glaciogenic reservoirs: from landsystems to reservoir architecture, Mar. Petrol. Geol., 115, 104205, https://doi.org/10.1016/j.marpetgeo.2019.104205, 2020. 

Lal, D.: Cosmic ray labeling of erosion surfaces: In situ nuclide production rates and erosion models, Earth Planet. Sc. Lett., 104, 424–439, https://doi.org/10.1016/0012-821X(91)90220-C, 1991. 

Levy, L. B., Kelly, M. A., Applegate, P. A., Howley, J. A., and Virginia, R. A.: Middle to late Holocene chronology of the western margin of the Greenland Ice Sheet: A comparison with Holocene temperature and precipitation records, Arct. Antarct. Alp. Res., 50, S100004, https://doi.org/10.1080/15230430.2017.1414477, 2018. 

Lüthgens, C. and Bose, M.: From morphostratigraphy to geochronology – on the dating of ice marginal positions, Quaternary Sci. Rev., 44, 26–36, https://doi.org/10.1016/j.quascirev.2010.10.009, 2012. 

Marks, L.: Foreland influence on Ice-Sheet Movement during the Vistulian (Würn) Glaciation: the Case of the Lubawa Elevation (Mazury Lakeland), Bulletin de L'academe Polonaise des Sciences, 26, 203–213, 1979. 

Marks, L.: Timing of the Late Vistulian (Weichselian) glacial phases in Poland, Quaternary Sci. Rev., 44, 81–88, https://doi.org/10.1016/j.quascirev.2010.08.008, 2012. 

Marks, L., Ber, A., Gogołek, W., and Piotrowska, K. (Eds.): Geological Map of Poland 1:500 000, Ministerstwo Środowiska, PIG-PIB, Warszawa, ISBN83-7372-853-8, 2006. 

Marks, L., Bitinas, A., Błaszkiewicz, M., Börner, A., Guobyte, R., Rinterknecht, V., and Tylmann, K.: Northern Central Europe: glacial landforms from the Last Glacial Maximum, in: European Glacial Landscapes, edited by: Palacios, D., Hughes, P. D., García-Ruiz, J. M., and Andrés, N., Maximum Extent of Glaciations, Elsevier, 381–388, https://doi.org/10.1016/B978-0-12-823498-3.00054-6, 2022. 

Moska, P., Bluszcz, A., Poręba, G., Tudyka, K., Adamiec, G., Szymak, A., and Przybyła, A.: Luminescence dating procedures at Gliwice luminescence dating laboratory, Geochronometria, 48, 1–15, https://doi.org/10.2478/geochr-2021-0001, 2021. 

Murray, A. S. and Wintle, A. G.: Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol, Rad. Meas., 32, 57–73, https://doi.org/10.1016/S1350-4487(99)00253-X, 2000. 

Nawrocki, J., Bogucki, A. B., Gozhik, P., Łanczont, M., Pańczyk, M., Standzikowski, K., Komar, M., Rosowiecka, O., and Tomeniuk, O.: Fluctuations of the Fennoscandian Ice Sheet recorded in the anisotropy of magnetic susceptibility of periglacial loess from Ukraine, Boreas, 48, 940–952, https://doi.org/10.1111/bor.12400, 2019. 

NGRIP-members: High resolution climate record of the northern hemisphere reaching into the last interglacial period, Nature 431, 147–151, https://doi.org/10.1038/nature02805, 2004. 

Niewiarowski, W.: Pleni- and Late Vistulian glacial lakes, their sediments and landforms: a case study from the young glacial landscape of Northern Poland, Prace Geograficzne, 128, 133–142, 2003. 

Niewiarowski, W., Olszewski, A., and Wysota, W.: The role of subglacial features in glacial morphogenesis of Kujawy-Dobrzyń subphase area in the southern and eastern part of the Chełmno-Dobrzyń Lakeland, Quaternary Studies in Poland, 13, 65–76, 1995. 

Noble, T. L., Rohling, E. J., Aitken, A. R. A., Bostock, H. C., Chase, Z., Gomez, N., Jong, L. M., King, M. A., Mackintosh, A. N., McCormack, F. S., McKay, R. M., Menviel, L., Phipps, S. J., Weber, M. E., Fogwill, C. J., Gayen, B., Golledge, N. R., Gwyther, D. E., Hogg, A. McC., Martos, Y. M., Pena-Molino, B., Roberts, J., van de Flierdt, T., and Williams, T.: The Sensitivity of the Antarctic Ice Sheet to a Changing Climate: Past, Present, and Future, Rev. Geophys., 58, e2019RG000663, https://doi.org/10.1029/2019RG000663, 2020. 

Prescott, J. R. and Stephan, L. G.: The contribution of cosmic radiation to the environmental dose for thermoluminescence dating, Latitude, altitude and depth dependencies, Pact, 6, 17–25, 1982. 

Rea, B. R., Newton, A. M. W., Lamb, R. M., Harding, R., Bigg, G. R., Rose, P., Spagnolo, M., Huuse, M., Cater, J. M. L., Archer, S., Buckley, F., Halliyeva, M., Huuse, J., Cornwell, D. G., Brocklehurst, S. H., and Howell, J. A.: Extensive marine-terminating ice sheets in Europe from 2.5 million years ago, Sci. Adv., 4, eaar8327, https://doi.org/10.1126/sciadv.aar8327, 2018. 

Rinterknecht, V. R., Marks, L., Piotrowski, J. A., Raisbeck, G. M., Yiou, F., Brook, E. J., and Clark, P. U.: Cosmogenic 10Be ages on the Pomeranian moraine, Poland, Boreas, 34, 186–191, https://doi.org/10.1111/j.1502-3885.2005.tb01014.x, 2005. 

Rinterknecht, V. R., Clark, P. U. M., Raisbeck, G. M., Yiou, F., Bitinas, A., Brook, E. J., Marks, L., Zelcs, V., Lunkka, J. P., Pavlovskaya, I. E., Piotrowski, J. A., and Raukas, A.: The last deglaciation of the southeastern sector of the Scandinavian Ice Sheet, Science, 311, 1449–1452, https://doi.org/10.1126/science.1120702, 2006. 

Soulet, G., Menot, G., Bayon, G., Rostek, F., Ponzevera, E., Toucanne, S., Lericolais, G., and Bard, E.: Abrupt drainage cycles of the Fennoscandian Ice Sheet, P. Natl. Acad. Sci. USA, 110, 6682–6687, https://doi.org/10.1073/pnas.1214676110, 2013. 

Stone, J.: Air pressure and cosmogenic isotope production, J. Geophys. Res., 105, 23753–23760, https://doi.org/10.1029/2000JB900181, 2000. 

Stroeven, A. P., Heyman, J., Fabel, F., Björck, S., Caffee, M. W., Fredin, O., and Harbor, J. M.: A new Scandinavian reference 10Be production rate, Quat. Geochronol., 29, 104–115, https://doi.org/10.1016/j.quageo.2015.06.011, 2015. 

Stroeven, A. P., Hattestrand, C., Kleman, J., Heyman, J., Fabel, D., Fredin, O., Goodfellow, B. W., Harbor, J. M., Jansen, J. D., Olsen, L., Caffee, M. W., Fink, D., Lundqvist, J., Rosqvist, G. C., Stromberg, B., and Jansson, K. N.: Deglaciation of Fennoscandia, Quaternary Sci. Rev., 147, 91–121, https://doi.org/10.1016/j.quascirev.2015.09.016, 2016. 

Toucanne, S., Zaragosi, S., Bourillet, J. F., Naughton, F., Cremer, M., Eynaud, F., and Dennielou, B.: Activity of the turbidite levees of the Celtic-Armorican margin (Bay of Biscay) during the last 30,000 years: imprints of the last European deglaciation and Heinrich events, Mar. Geol., 247, 84–103, 2008. 

Toucanne, S., Zaragosi, S., Bourillet, J. F., Cremer, M., Eynaud, F., Turon, J. L., Fontanier, C., Van Vliet Lanoë, B., and Gibbard, P.: Timing of massive “Fleuve Manche” discharges over the last 350 kyr: insights into the European Ice Sheet oscillations and the European drainage network from MIS 10 to 2, Quaternary Sci. Rev., 28, 1238–1256, https://doi.org/10.1016/j.quascirev.2009.01.006, 2009. 

Toucanne, S., Zaragosi, S., Bourillet, J.-F., Marieu, V., Cremer, M., Kageyama M., Van Vliet-Lanoë, B., Eynaud, F., Turon, J.-F., and Gibbard, P. L.: The first estimation of Fleuve Manche palaeoriver discharge during the last deglaciation: evidence for Fennoscandian ice sheet meltwater flow in the English Channel ca 20-18 ka ago, Earth Planet. Sc. Lett., 290, 459–473, https://doi.org/10.1016/j.epsl.2009.12.050, 2010. 

Toucanne, S., Soulet, G., Freslon, N., Jacinto, R. S., Dennielou, B., Zaragosi, S., Eynaud, F., Bourillet, J.-F., and Bayon, G.: Millennial-scale fluctuations of the European Ice Sheet at the end of the last glacial, and their potential impact on global climate, Quaternary Sci. Rev., 123, 113–133, https://doi.org/10.1016/j.quascirev.2015.06.010, 2015. 

Tylmann, K.: Dynamics of glacial processes in the area of the Lubawa Upland, PhD thesis, Nicolaus Copernicus University Archive, Toruń, 156 pp., 2014. 

Tylmann, K. and Wysota, W.: Origin and transformation of morainic landscape in NW part of Lubawa Upland (north Poland), Przegląd Geologiczny, 59, 739–750, 2011 (in Polish). 

Tylmann, K., Wysota, W., and Piotrowski, J. A.: Palimpsest terminal moraines in NW part of Lubawa Upland – structure and mechanisms of formation, Landform Analysis, 25, 143–157, https://doi.org/10.12657/landfana.025.013, 2014. 

Tylmann, K., Rinterknecht, V. R., Woźniak, P. P., Bourlès, D., Schimmelpfennig, I., Guillou, V., and ASTER Team: The Local Last Glacial Maximum of the southern Scandinavian Ice Sheet front: Cosmogenic nuclide dating of erratics in northern Poland, Quaternary Sci. Rev., 219, 36–46, https://doi.org/10.1016/j.quascirev.2019.07.004, 2019. 

Tylmann, K., Rinterknecht, V., Woźniak, P. P., Guillou, V., and ASTER Team: Asynchronous dynamics of the last Scandinavian Ice Sheet along the Pomeranian ice-marginal belt: A new scenario inferred from surface exposure 10Be dating, Quaternary Sci. Rev., 294, 107755, https://doi.org/10.1016/j.quascirev.2022.107755, 2022.  

Wełniak, A.: Detailed Geological Map of Poland at the scale 1:50 000, sheet Nowe Miasto Lubawskie, CAG PIG-PIB, Warszawa, ISBN83-7372-832-5, 2002. 

Wysota, W., Molewski, P., and Sokołowski, R. J.: Record of the Vistula ice lobe advances in the Late Weichselian glacial sequence in north-central Poland, Quatern. Int., 207, 26–41, https://doi.org/10.1016/j.quaint.2008.12.015, 2009. 

Zaragosi, S., Eynaud, F., Pujol, C., Auffret, G. A., Turon, J. L., and Garlan, T.: Initiation of the European deglaciation as recorded in the northwestern Bay of Biscay slope environments (Meriadzek Terrace and Trevelyan Escarpment): a multi-proxy approach, Earth Planet. Sc. Lett., 188, 493–507, https://doi.org/10.1016/S0012-821X(01)00332-6, 2001. 

Zaragosi, S., Bourillet, J. F., Eynaud, F., Toucanne, S., Denhard, B., Van Toer, A., and Lanfumey, V.: The impact of the last European deglaciation on the deep-sea turbidite systems of the Celtic–Armorican margin (Bay of Biscay), Geo-Mar. Lett., 26, 317–329, https://doi.org/10.1007/s00367-006-0048-9, 2006. 

Millennial-scale fluctuations of palaeo-ice margin at the southern fringe of the last Fennoscandian Ice Sheet (2024)

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