在最后一次消冰期,劳伦泰德东南部冰盖迅速变薄

GSA Bulletin Pub Date : 2022-12-14 DOI:10.1130/b36463.1
Christopher T. Halsted, P. Bierman, J. Shakun, P. Davis, L. Corbett, M. Caffee, Taylor S. Hodgdon, J. Licciardi
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引用次数: 2

摘要

末次盛冰期后Laurentide冰盖体积变化的精确重建对于理解冰盖对海平面上升的贡献、由此产生的融水对海洋环流的影响以及冰川消融的时空格局至关重要。在这里,我们通过测量美国东北部9座山脉垂直断面上采集的81个样品的原位宇宙生成10Be,为劳伦泰德冰盖在最后一次消冰期间变薄提供了经验约束。结合以往研究的5个垂直断面上的107个暴露年龄样本,我们重建了冰盖变薄的历史。在外围站点(终末冰碛200公里以内),我们发现了在19.5 ka至17.5 ka之间约600米变薄的证据,这与阀记录显示的缓慢的初始边缘退缩相一致。在终碛堤以北>400 km处,海拔1200 m以上和1200 m以下的暴露年龄表现出不同的模式。这一海拔高度以上的年龄变化较大,而在800 - 1000米海拔范围内,较低海拔的年龄难以区分,这种模式表明,在~ 1200米高度存在冰下热边界,将下方的侵蚀性暖基冰和上方的多热性最低侵蚀冰分开。上冰山的低海拔年龄在15 ~ 13 ka之间,这表明在b ølling- allerd变暖期间,约有1000 m的快速变薄。这些古冰快速变薄的速度与世界上其他垂直暴露年龄样带的速度相当,可能比南极洲和格陵兰岛现代盆地范围的变薄速度更快,这表明劳伦泰德冰盖东南部对气候变暖高度敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid southeastern Laurentide Ice Sheet thinning during the last deglaciation revealed by elevation profiles of in situ cosmogenic 10Be
Accurate reconstruction of Laurentide Ice Sheet volume changes following the Last Glacial Maximum is critical for understanding ice sheet contribution to sea-level rise, the resulting influence of meltwater on oceanic circulation, and the spatial and temporal patterns of deglaciation. Here, we provide empirical constraints on Laurentide Ice Sheet thinning during the last deglaciation by measuring in situ cosmogenic 10Be in 81 samples collected along vertical transects of nine mountains in the northeastern United States. In conjunction with 107 exposure age samples over five vertical transects from previous studies, we reconstruct ice sheet thinning history. At peripheral sites (within 200 km of the terminal moraine), we find evidence for ∼600 m of thinning between 19.5 ka and 17.5 ka, which is coincident with the slow initial margin retreat indicated by varve records. At locations >400 km north of the terminal moraine, exposure ages above and below 1200 m a.s.l. exhibit different patterns. Ages above this elevation are variable and older, while lower elevation ages are indistinguishable over 800−1000 m elevation ranges, a pattern that suggests a subglacial thermal boundary at ∼1200 m a.s.l. separating erosive, warm-based ice below and polythermal, minimally erosive ice above. Low-elevation ages from up-ice mountains are between 15 ka and 13 ka, which suggests rapid thinning of ∼1000 m coincident with Bølling-Allerød warming. These rates of rapid paleo-ice thinning are comparable to those of other vertical exposure age transects around the world and may have been faster than modern basin-wide thinning rates in Antarctica and Greenland, which suggests that the southeastern Laurentide Ice Sheet was highly sensitive to a warming climate.
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