<p>While the Late Glacial evolution of Pyrenean glaciers is rather well-known, Holocene glacier behavior is much less constrained, except for the Little Ice Age period. In this study, we attempt to bridge this knowledge gap by dating four moraines in the Western-Central Pyrenees using in situ chlorine-36 cosmic-ray exposure dating of moraine boulders. Ages of 11.2 ± 1.5&#xa0;ka, 7.8 ± 1.1&#xa0;ka, 3.0 ± 0.6&#xa0;ka and 972 ± 208&#xa0;yr were obtained, constituting the most robust directly dated Holocene glacier chronology in the Pyrenees. The moraine age of 7.8 ± 1.1&#xa0;ka (<i>n</i> = 5) is a novel finding as no evidence for significant contemporary glacial advance exists at any other site in the Pyrenees or in the Alps/elsewhere in Europe. We tentatively link this moraine to the 8.2&#xa0;ka cold event. We propose a paleoclimatic interpretation of this Holocene glacial evolution, in conjunction with the radiocarbon ages from nearby peat bog cores. Further, we hypothesize on the role of Mid-Holocene warm periods on the melting of permafrost within rock glacier complexes and how they translate into peat bog deposits in the vicinity of the moraines. Finally, based on archeological evidence (construction and ceramic remains) collected in the center of Troumouse Cirque, the possible influence of its glacier variability on first human settlements in the region is discussed.</p>

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Holocene glacier evolution in the Pyrenees based on 36Cl cosmic-ray exposure dating (Troumouse Cirque, Pyrenees National Park)

  • Deborah Verfaillie,
  • Emmanuel Chapron,
  • Vincent Jomelli,
  • Arsène Druel,
  • Alexandre Lacou,
  • Sylvain Nougarède,
  • Valery Guillou,
  • Irene Schimmelpfennig,
  • Joanna Charton,
  • Georges Aumaître,
  • Didier Bourlès,
  • Karim Keddadouche

摘要

While the Late Glacial evolution of Pyrenean glaciers is rather well-known, Holocene glacier behavior is much less constrained, except for the Little Ice Age period. In this study, we attempt to bridge this knowledge gap by dating four moraines in the Western-Central Pyrenees using in situ chlorine-36 cosmic-ray exposure dating of moraine boulders. Ages of 11.2 ± 1.5 ka, 7.8 ± 1.1 ka, 3.0 ± 0.6 ka and 972 ± 208 yr were obtained, constituting the most robust directly dated Holocene glacier chronology in the Pyrenees. The moraine age of 7.8 ± 1.1 ka (n = 5) is a novel finding as no evidence for significant contemporary glacial advance exists at any other site in the Pyrenees or in the Alps/elsewhere in Europe. We tentatively link this moraine to the 8.2 ka cold event. We propose a paleoclimatic interpretation of this Holocene glacial evolution, in conjunction with the radiocarbon ages from nearby peat bog cores. Further, we hypothesize on the role of Mid-Holocene warm periods on the melting of permafrost within rock glacier complexes and how they translate into peat bog deposits in the vicinity of the moraines. Finally, based on archeological evidence (construction and ceramic remains) collected in the center of Troumouse Cirque, the possible influence of its glacier variability on first human settlements in the region is discussed.