This paper builds a database of apatite fission track (AFT) ages and thermal-modeling results covering the whole southern Tibetan Plateau, providing detailed information on the cooling and erosion process of the modern landscape evolution and comparing with the distribution of climatic factors. Large-scale AFT age distribution and thermal-history modeling results indicate extraordinarily intense erosion along the South Himalayan Front and relatively weak erosion in the interior of the plateau. AFT samples from different regions plot into different partitions on the elevation vs AFT age diagram, and there is an excellent coupling between AFT ages and climatic factors. Based on AFT thermal-history modeling results, an intensified erosion even...
New detrital low-temperature thermochronometry provides estimates of long-term erosion rates and the...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94784/1/tect2305.pd
Models of the exhumation histories of mountain ranges are often quantified through thermal-kinematic...
In this paper, we report thermochronological data from the southwest slope of Namche Barwa Peak, the...
The cosmogenic 10Be exposure histories of in situ bedrock surfaces from the Tibetan Plateau indicate...
The work presents in situ low temperature thermochronological (Apatite Fission Track (AFT) and (U-Th...
The Himalayan ranges of South Asia form one of the world’s most impressive rain shadows. Data from t...
The cosmogenic 10Be exposure histories of in situ bedrock surfaces from the Tibetan Plateau indicate...
Characterization of low-temperature cooling histories and associated exhumation rates is critical fo...
abstract: The collision of India and Eurasia constructed the Himalayan Mountains. Questions remain r...
International audienceUnderstanding the relative strengths of tectonic and climatic forcing on erosi...
The Himalayan orogen characterized by very high variability in tectonic and climatic processes, and ...
International audienceAbstract. The Three Rivers Region in south-east Tibet represents a transition ...
The central Songpan–Ganzi belt, located on the eastern margin of the Tibetan Plateau, has a similar ...
Thesis (Ph.D.)--University of Washington, 2014At the eastern margin of the Indian-Eurasian plate col...
New detrital low-temperature thermochronometry provides estimates of long-term erosion rates and the...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94784/1/tect2305.pd
Models of the exhumation histories of mountain ranges are often quantified through thermal-kinematic...
In this paper, we report thermochronological data from the southwest slope of Namche Barwa Peak, the...
The cosmogenic 10Be exposure histories of in situ bedrock surfaces from the Tibetan Plateau indicate...
The work presents in situ low temperature thermochronological (Apatite Fission Track (AFT) and (U-Th...
The Himalayan ranges of South Asia form one of the world’s most impressive rain shadows. Data from t...
The cosmogenic 10Be exposure histories of in situ bedrock surfaces from the Tibetan Plateau indicate...
Characterization of low-temperature cooling histories and associated exhumation rates is critical fo...
abstract: The collision of India and Eurasia constructed the Himalayan Mountains. Questions remain r...
International audienceUnderstanding the relative strengths of tectonic and climatic forcing on erosi...
The Himalayan orogen characterized by very high variability in tectonic and climatic processes, and ...
International audienceAbstract. The Three Rivers Region in south-east Tibet represents a transition ...
The central Songpan–Ganzi belt, located on the eastern margin of the Tibetan Plateau, has a similar ...
Thesis (Ph.D.)--University of Washington, 2014At the eastern margin of the Indian-Eurasian plate col...
New detrital low-temperature thermochronometry provides estimates of long-term erosion rates and the...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94784/1/tect2305.pd
Models of the exhumation histories of mountain ranges are often quantified through thermal-kinematic...