Uplift and exhumation in the Tianshan, western China: New insights from detrital zircon morphology and thermochronology
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
https://link.springer.com/content/pdf/10.1007/s11430-021-9872-4.pdf
Reference59 articles.
1. Bernet M, Garver J I. 2005. Fission-track analysis of detrital zircon. Rev Mineral Geochem, 58: 205–237
2. Bernet M, Zattin M, Garver J I, Brandon M T, Vance J A. 2001. Steady-state exhumation of the European Alps. Geology, 29: 35–38
3. Bernet M. 2010. Tracing exhumation and orogenic wedge dynamics in the European Alps with detrital thermochronology: COMMENT. Geology, 38: e226
4. Brandon M T, Roden-Tice M K, Garver J I. 1998. Late Cenozoic exhumation of the Cascadia accretionary wedge in the Olympic Mountains, northwest Washington State. Geol Soc Am Bull, 110: 985–1009
5. Brandon M T. 2002. Decomposition of mixed grain age distributions using Binomfit. On Track, 24: 13–18
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