4.8 Article

Time scale bias in erosion rates of glaciated landscapes

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SCIENCE ADVANCES
卷 2, 期 10, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.1600204

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  1. Caltech (California Institute of Technology)
  2. Terrestrial Hazard Observation and Reporting Center
  3. Tectonics Observatory at Caltech
  4. National Center for Earth-Surface Dynamics 2 synthesis postdoctoral program
  5. Imperial College London Junior Research Fellowship
  6. Alexander von Humboldt Foundation

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Deciphering erosion rates over geologic time is fundamental for understanding the interplay between climate, tectonic, and erosional processes. Existing techniques integrate erosion over different time scales, and direct comparison of such rates is routinely done in earth science. On the basis of a global compilation, we show that erosion rate estimates in glaciated landscapes may be affected by a systematic averaging bias that produces higher estimated erosion rates toward the present, which do not reflect straightforward changes in erosion rates through time. This trend can result from a heavy-tailed distribution of erosional hiatuses (that is, time periods where no or relatively slow erosion occurs). We argue that such a distribution can result from the intermittency of erosional processes in glaciated landscapes that are tightly coupled to climate variability from decadal to millennial time scales. In contrast, we find no evidence for a time scale bias in spatially averaged erosion rates of landscapes dominated by river incision. We discuss the implications of our findings in the context of the proposed coupling between climate and tectonics, and interpreting erosion rate estimates with different averaging time scales through geologic time.

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