Many questions remain unanswered regarding the Quaternary glaciations of the Tibetan Plateau. We have used terrestrial cosmogenic nuclide (TCN) exposure age dating of glacial deposits to examine the style, extent, and timing of past glaciations of the Bayan Har Shan, a mountain region on the northeastern Tibetan Plateau. This area lies within a transition zone between the dry interior of the Tibetan Plateau and the wetter eastern margin affected by the Asian monsoon. Bayan Har Shan has many glacial landforms and deposits that provide evidence for former glaciation ranging from cirque and valley glaciers to ice-fields and ice caps. In an attempt to constrain the timing of glaciations in Bayan Har Shan, we have performed TCN exposure dating o...
The timing of past glaciation across the Tian Shan provides a proxy for past climate change in this ...
Glacial landforms and sediments provide evidence for the existence of two Late Pleistocene major gla...
Understanding past variations in the extent of glaciers is important for reconstructing past climate...
The paleoglaciology of the Tibetan Plateau remains elusive, with important hiata regarding the style...
The Bayan Har Shan, a prominent upland area in the northeastern sector of the Tibetan Plateau, hosts...
The Bayan Har Shan, a prominent upland area in the northeastern sector of the Tibetan Plateau, hosts...
Terrestrial cosmogenic nuclide (TCN) exposure dating has become the most dominant technique for cons...
Terrestrial cosmogenic nuclide (TCN) exposure dating is an important chronological tool in Quaternar...
The paleoglaciology of the Tibetan Plateau has remained elusive because extensive areas still lack d...
This study concerns the palaeoglaciation of the northeastern Tibetan Plateau, with emphasis on the B...
International audienceThis contribution provides new constraints on the timing of Tibetan glacial re...
Cosmogenic nuclide surface exposure dating of boulders and erratics provides new constraints for a g...
The Tibetan Plateau holds an ample record of past glaciations, and there is an extensive set of glac...
The timing of past glaciation across the Tian Shan provides a proxy for past climate change in this ...
Cosmogenic exposure dating has greatly enhanced our ability to define glacial chronologies spanning ...
The timing of past glaciation across the Tian Shan provides a proxy for past climate change in this ...
Glacial landforms and sediments provide evidence for the existence of two Late Pleistocene major gla...
Understanding past variations in the extent of glaciers is important for reconstructing past climate...
The paleoglaciology of the Tibetan Plateau remains elusive, with important hiata regarding the style...
The Bayan Har Shan, a prominent upland area in the northeastern sector of the Tibetan Plateau, hosts...
The Bayan Har Shan, a prominent upland area in the northeastern sector of the Tibetan Plateau, hosts...
Terrestrial cosmogenic nuclide (TCN) exposure dating has become the most dominant technique for cons...
Terrestrial cosmogenic nuclide (TCN) exposure dating is an important chronological tool in Quaternar...
The paleoglaciology of the Tibetan Plateau has remained elusive because extensive areas still lack d...
This study concerns the palaeoglaciation of the northeastern Tibetan Plateau, with emphasis on the B...
International audienceThis contribution provides new constraints on the timing of Tibetan glacial re...
Cosmogenic nuclide surface exposure dating of boulders and erratics provides new constraints for a g...
The Tibetan Plateau holds an ample record of past glaciations, and there is an extensive set of glac...
The timing of past glaciation across the Tian Shan provides a proxy for past climate change in this ...
Cosmogenic exposure dating has greatly enhanced our ability to define glacial chronologies spanning ...
The timing of past glaciation across the Tian Shan provides a proxy for past climate change in this ...
Glacial landforms and sediments provide evidence for the existence of two Late Pleistocene major gla...
Understanding past variations in the extent of glaciers is important for reconstructing past climate...