Willett C D, Ma K F, Brandon M T, Hourigan J K, Christeleit E C, Shuster D L
Department of Earth and Planetary Science, 307 McCone Hall, UC Berkeley, Berkeley, CA 94720, USA.
Berkeley Geochronology Center, 2455 Ridge Road, Berkeley, CA 94709, USA.
Sci Adv. 2020 Feb 12;6(7):eaay1641. doi: 10.1126/sciadv.aay1641. eCollection 2020 Feb.
We report a mountain-scale record of erosion rates in the central Patagonian Andes from >10 million years (Ma) ago to present, which covers the transition from a fluvial to alpine glaciated landscape. Apatite (U-Th)/He ages of 72 granitic cobbles from alpine glacial deposits show slow erosion before ~6 Ma ago, followed by a two- to threefold increase in the spatially averaged erosion rate of the source region after the onset of alpine glaciations and a 15-fold increase in the top 25% of the distribution. This transition is followed by a pronounced decrease in erosion rates over the past ~3 Ma. We ascribe the pulse of fast erosion to local deepening and widening of valleys, which are characteristic features of alpine glaciated landscapes. The subsequent decline in local erosion rates may represent a return toward a balance between rock uplift and erosion.
我们报告了巴塔哥尼亚安第斯山脉中部从1000多万年前至今的山脉尺度侵蚀速率记录,该记录涵盖了从河流地貌到高山冰川地貌的转变。对来自高山冰川沉积物的72颗花岗岩卵石进行的磷灰石(U-Th)/He年代测定显示,在约600万年前之前侵蚀缓慢,高山冰川作用开始后,源区空间平均侵蚀速率增加了两到三倍,分布前25%区域的侵蚀速率增加了15倍。在过去约300万年里,这种转变之后侵蚀速率显著下降。我们将快速侵蚀脉冲归因于山谷的局部加深和拓宽,这是高山冰川地貌的特征。随后局部侵蚀速率的下降可能代表着岩石隆升与侵蚀之间回归平衡。