Skip to main content

Full text: Evidence for strong relations between the upper Tagus loess formation (central Iberia) and the marine atmosphere off the Iberian margin during the last glacial period

D. Wolf et al. 
climate variability during the past two glacial periods. Nature Palacios, D., Andres, N., Gömez-Ortiz, A., Garcfa-Ruiz, G., 2017. 
Geosci 3, 127-131. Evidence of glacial activity during the Oldest Dryas in the Moun- 
Martin-Garcia, G.M., 2019. Oceanic impact on European climate cain of Spain. In: Hughes, P., Woodward, J. (Eds.), Quaternary 
changes during the Quaternary. Geosciences 9, 119. Glaciation in the Mediterranean Mountains. Geological Society 
McGee, D., Broecker, W.S., Winckler, G., 2010. Gustiness: The of London Special Publications 433, p. 87-110. https:/doi.org/ 
driver of glacial dustiness? Quaternary Science Reviews 29. 10.1144/SP433 
2340-2350. Palacios, D., de Andres, N., de Marcos, J., Väzquez-Selem, L., 
Moreno, A., Cacho, I., Canals, M., Grimalt, J.O., Sänchez-Goni, 2012. Glacial landforms and their paleoclimatic significance in 
M.F., Shackleton, N., Sierro, F.J., 2005. Links between marine Sierra de Guadarrama, Central Iberian Peninsula. Geomorphology 
and atmospheric processes oscillating on a millennial time-scale. 139-140, 67-78. 
A multi-proxy study of the last 50,000 yr from the Alboran Sea Palacios, D., de Marcos, J., Väzquez-Selem, L., 2011. Last Glacial 
(Western Mediterranean Sea). Quaternary Science Reviews 24. Maximum and deglaciation of Sierra de Gredos, central Iberian 
1623-1636. Peninsula. Quaternary International 233, 16-26. 
Moreno, A., Gonzälez-Samperiz, P., Morellön, M., Valero-Garces, Panera, J., Torres, T., P&rez-Gonzälez, A., Ortiz, J.E., Rubio-Jara, S., 
B.L., Fletcher, W.J., 2012. Northern Iberian abrupt climate Uribelarrea del Val, D., 2011. Geocronologfa de la Terraza Com- 
change dynamics during the last glacial cycle: A view from lacus- pleja de Arganda en el valle del rfo Jarama (Madrid, Espana). 
trine sediments. Quaternary Science Reviews 36, 139-153. Estudios Geologicos 67, 495-504. [in Spanish] 
Moreno, A., Stoll, H.M., Jimenez-Sänchez, M., Cacho, I., Valero- Pausata, F.S.R., Li, C., Wettstein, J.J., Kageyama, M., Nisancioglu, 
Garces, B., Ito, E., Edwards, L.R., 2010. A speleothem record K.H., 2011. The key role of topography in altering North Atlantic 
of rapid climatic shifts during last glacial period from Northern atmospheric circulation during the last glacial period. Climate of 
Iberian Peninsula. Global and Planetary Change 71, 218-231. the Past 7, 1089-1101. 
Moreno, A., Svensson, A., Brooks, S.J., Connor, S., Engels, S., Pinto, J.G., Ludwig, P., 2020. Extratropical cyclones over the North 
Fletcher, W., Genty, D., ef al., 2014. A compilation of Western Atlantic and western Europe during the Last Glacial Maximum 
European terrestrial records 60-8 ka BP: towards an understand- and implications for proxy interpretation. Climate of the Past 
ing of latitudinal climatic gradients. Quaternary Science Reviews 16, 611-611. 
106, 167-185. Poch, R.M., Artieda, O., Herrero, J., Lebedeva-Verba, M., 2010. In: 
Moreno, D., Duval, M., Rubio-Jara, S., Panera, J., Bahain, J.J., Shao, Stoops, G., Marcelino, V., Mees, F. (Eds.), Interpretation of 
Q., Perez-Gonzälez, A., Falgueres, C., 2019. ESR dating of Micromorphological Features of Soils and Regoliths. Elsevier, 
Middle Pleistocene archaeo-paleontological sites from the Amsterdam, pp. 149-194. 
Manzanares and Jarama river valleys (Madrid Basin, Spain). Qua- Prescott, J.R., Hutton, J.T., 1994. Cosmic ray contribution to 
ternary International 520, 23-38. dose rates for luminescence and ESR dating: Large depths 
Murray, A.S., Wintle, A.G., 2000. Luminescence dating of quartz and long-term time variations. Radiation Measurements 23, 
using an improved single aliquot regenerative dose protocol. 497-500. 
Radiation Measurements 32, 57-73. Rahmstorf, S., 2002. Ocean circulation and climate during the past 
Murray, A.S., Wintle, A.G., 2003. The single aliquot regenerative 120,000 years. Nature 419, 207-214. 
dose protocol: potential for improvements in reliability. Radiation Rasmussen, S.O., Bigler, M., Blockley, S.P., Blunier, T., Buchardt, 
Measurements 37, 377-381. S.L., Clausen, H.B., Cvijanovic, L., ef al., 2014. A stratigraphic 
Naughton, F., Sänchez-Goni, M.F., Rodrigues, T., Salguiero, E., framework for abrupt climatic changes during the Last Glacial 
Costas, S., Desprat, S., Duprat, J., et al., 2016. Climate variability period based on three synchronized Greenland ice-core records: 
across the last deglaciation in NW Iberia and its margin. Quater- ‚efining and extending the INTIMATE event stratigraphy. Quater- 
nary International 414, 9-22. nary Science Reviews 106, 14-28. 
Naughton, F., Sänchez Gofi, M.F., Kageyama, M., Bard, E., Duprat, R Development Core Team, 2016. R: A Language and Environment 
J., Cortijo, E., Desprat, S., Malaize, B., Joly, C., Rostek, F., for Statistical Computing. R Foundation for Statistical Comput- 
2009. Wet to dry climatic trend in north western Iberia within Hein- ing, Vienna, Austria. 
rich events. Earth and Planetary Science Letters 284, 329-342. Rendell, H., Calderön, T., P&rez-Gonzälez, A., Gallärdo, J., Millän, 
Oliva, M., Palacios, D., Fernändez-Fernändez, J.M., Rodriguez- A., Townsend, P., 1994. Thermoluminescence and optically 
Rodriguez, L., Garcfa-Ruiz, J.M., Andres, N., Carrasco, R.M., stimulated luminescence dating of Spanish dunes. Quaternary 
et al., 2019. Late Quaternary glacial phases in the Iberian Penin- Science Reviews 13, 429-432. 
sula. Earth Science Reviews 192, 564-600. Richter, C., Wolf, D., Walther, F., Meng, S., Sahakyan, L., Hova- 
Oliva, M., Serrano, E., Gömez-Ortiz, A., Gonzälez-Amuchastegui, kimyan, H., Wolpert, T., Fuchs, M., Faust, D., 2020. New 
M.J., Nieuwendam, A., Palacios, D., Perez-Alberti, A., et al., insights into Southern Caucasian glacial-interglacial climate con- 
2016. Spatial and temporal variability of periglaciation of the ditions inferred from Quaternary gastropod fauna. Journal of 
Iberian Peninsula. Quaternary Science Reviews 137, 176-199. Quaternary Science 35, 634-649. 
Ortiz, J.E., Moreno, L., Torres, T., Vegas, J., Ruiz-Zapata, B., Roche, D., Paillard, D., Cortijo, E., 2004. Constraints on the dura- 
Garcfa-Cortes, Ä., Galän, L., P&rez-Gonzälez, A., 2013. A 220 ion and freshwater release of Heinrich event 4 through isotope 
ka palaeoenvironmental reconstruction of the Fuentillejo maar modelling. Nature 432, 379-382. 
lake record (Central Spain) using biomarker analysis. Organic Roettig, C-B., Kolb, T., Wolf, D., Baumgart, P., Richter, C., Schlei- 
Geochemistry 55, 85-97. cher, A., Zöller, L., Faust, D., 2017. Complexity of aeolian 
Pailler, D., Bard, E., 2002. High frequency palaeoceanographic dynamics (Canary Islands). Palaeogeography, Palaeoclimatol- 
changes during the past 140000 yr recorded by the organic matter 0gy, Palaeoecology 472, 146-162. 
in sediments of the Iberian Margin. Paleogeography, Paleoclima- Roettig, C-B., Varga, G., Sauer, D., Kolb, T., Wolf, D., Makowsky. 
tology, Paleoecology 181, 431-452. V.. Recio Espejo, J.M., Zöller, L.. Faust, D.. 2019. 
Downloaded from https://www.cambridge.org/core. IP address: 77.191.167.9, on 05 Feb 2021 at 17:09:02. subject to the Cambridge Core terms of use. available at 
attns’/Aananar cambridaoe araf/carefterms https‘ Zidal ara/10 1017/13 20720 11
	        
Waiting...

Note to user

Dear user,

In response to current developments in the web technology used by the Goobi viewer, the software no longer supports your browser.

Please use one of the following browsers to display this page correctly.

Thank you.