Gangdese batholith in the southern Lhasa block is a key location for exploring the Tibetan Plateau uplift and exhumation history. We present the new low-temperature thermochronological data from two north-south traverses in the central Gangdese batholith to reveal their cooling histories and corresponding controls. Zircon fission track ages show prominent clusters ranging from 23.7 to 51.6. Ma, apatite fission track ages from 9.4 to 36.9. Ma, apatite (U-Th)/He ages between 9.5 and 12.3. Ma, and one zircon (U-Th)/He age around 77.8. Ma. These new data and thermal modeling, in combination with the regional geological data, suggest that the distinct parts of Gangdese batholith underwent different cooling histories resulted from various dynamic...
Zircon, apatite (U-Th)/He, and apatite fission-track age data record a rapid cooling event in the La...
High topography in eastern Tibet is thought to have formed when deep crust beneath the central Tibet...
Much of the interior of the Tibetan Plateau is characterized by internal drainage, low relief topogr...
The morpho-tectonic evolution of the Tibetan Plateau is controlled by complicated interactions betwe...
The morpho-tectonic evolution of the Tibetan Plateau is controlled by complicated interactions betwe...
International audienceThe Ladakh Batholith is part of the Transhimalayan Plutonic Belt, which crops ...
To evaluate the history of denudation and cooling of the Lincang granitioid batholith, and investiga...
We conducted biotite Ar-40/Ar-39 thermochronological research in the eastern Himalayan syntaxis and ...
International audienceThe westernmost Tibetan plateau, despite being internally drained, has a high ...
International audienceThe Indus-Yarlung suture of southernmost Tibet marks the initial collisional z...
Abstract. Structural and thermochronological investigations of southern Tibet (Xizang) suggest that ...
In the Nyainqentanglha (NQTL) massif, southern Tibet, a late Cenozoic, SE dipping, normal fault exhu...
Knowledge of the thermal history of the Linzizong Group (69–47 Ma) within the Gangdese arc is critic...
Abstract. Structural and thermochronological investigations of southern Tibet (Xizang) suggest that ...
Zircon, apatite (U-Th)/He, and apatite fission-track age data record a rapid cooling event in the La...
High topography in eastern Tibet is thought to have formed when deep crust beneath the central Tibet...
Much of the interior of the Tibetan Plateau is characterized by internal drainage, low relief topogr...
The morpho-tectonic evolution of the Tibetan Plateau is controlled by complicated interactions betwe...
The morpho-tectonic evolution of the Tibetan Plateau is controlled by complicated interactions betwe...
International audienceThe Ladakh Batholith is part of the Transhimalayan Plutonic Belt, which crops ...
To evaluate the history of denudation and cooling of the Lincang granitioid batholith, and investiga...
We conducted biotite Ar-40/Ar-39 thermochronological research in the eastern Himalayan syntaxis and ...
International audienceThe westernmost Tibetan plateau, despite being internally drained, has a high ...
International audienceThe Indus-Yarlung suture of southernmost Tibet marks the initial collisional z...
Abstract. Structural and thermochronological investigations of southern Tibet (Xizang) suggest that ...
In the Nyainqentanglha (NQTL) massif, southern Tibet, a late Cenozoic, SE dipping, normal fault exhu...
Knowledge of the thermal history of the Linzizong Group (69–47 Ma) within the Gangdese arc is critic...
Abstract. Structural and thermochronological investigations of southern Tibet (Xizang) suggest that ...
Zircon, apatite (U-Th)/He, and apatite fission-track age data record a rapid cooling event in the La...
High topography in eastern Tibet is thought to have formed when deep crust beneath the central Tibet...
Much of the interior of the Tibetan Plateau is characterized by internal drainage, low relief topogr...