The isotope geochronology of isochronously deposited Cambrian strata from different tectonostratigraphic zones of the Himalaya confirms new stratigraphic, sedimentological, and faunal evidence indicating that the Himalaya was a single continental margin prior to collision of India with Asia. Lesser, Greater, and Tethyan Himalaya represent proximal to distal parts of a passive continental margin that has been subsequently deformed during Cenozoic collision of India with Asia. Detrital zircon and neodymium isotopic data presented herein discount the prevailing myth that the Lesser Himalaya has a unique geochronologic and geochemical signature that is broadly applicable to modeling the uplift history of the Himalaya. The conclusion that all pr...
The Jurassic-Cretaceous (Upper Tethyan) flysch well exposed in the Thakkhola Section, Nepal, was dep...
The Jurassic-Cretaceous (Upper Tethyan) flysch well exposed in the Thakkhola Section, Nepal, was dep...
Despite being the largest active collisional orogen on Earth, the growth mechanism of the Himalaya r...
The isotope geochronology of isochronously deposited Cambrian strata from different tectonostratigra...
A common view in Himalayan geology is that differences in detrital zircon age distributions and whol...
A central debate for the evolution of the Himalayan orogen is how the Greater Himalayan Crystalline ...
The metamorphic core of the Himalaya is composed of Indian cratonic rocks with two distinct crustal ...
Our understanding of the geologic evolution of the Himalaya remains incomplete, particularly in rega...
AbstractSubstantial part of the northern margin of Indian plate is subducted beneath the Eurasian pl...
<p>Geochemical and geochronological analyses provide quantitative evidence about the origin, develop...
The Himalayan orogen is a type example of continent-continent collision. Knowledge of the timing of ...
We report the first geochemical traverse to integrate U–Pb ages and Hf data on single detrital zirco...
We report the first geochemical traverse to integrate U–Pb ages and Hf data on single detrital zirco...
U–Pb age data of detrital zircons from Tethyan Himalaya (TH) strata, Lesser Himalaya (LH) strata, Cr...
The Lesser Himalaya is a key tectonostratigraphic zone of the Himalayan fold-thrust belt; however, i...
The Jurassic-Cretaceous (Upper Tethyan) flysch well exposed in the Thakkhola Section, Nepal, was dep...
The Jurassic-Cretaceous (Upper Tethyan) flysch well exposed in the Thakkhola Section, Nepal, was dep...
Despite being the largest active collisional orogen on Earth, the growth mechanism of the Himalaya r...
The isotope geochronology of isochronously deposited Cambrian strata from different tectonostratigra...
A common view in Himalayan geology is that differences in detrital zircon age distributions and whol...
A central debate for the evolution of the Himalayan orogen is how the Greater Himalayan Crystalline ...
The metamorphic core of the Himalaya is composed of Indian cratonic rocks with two distinct crustal ...
Our understanding of the geologic evolution of the Himalaya remains incomplete, particularly in rega...
AbstractSubstantial part of the northern margin of Indian plate is subducted beneath the Eurasian pl...
<p>Geochemical and geochronological analyses provide quantitative evidence about the origin, develop...
The Himalayan orogen is a type example of continent-continent collision. Knowledge of the timing of ...
We report the first geochemical traverse to integrate U–Pb ages and Hf data on single detrital zirco...
We report the first geochemical traverse to integrate U–Pb ages and Hf data on single detrital zirco...
U–Pb age data of detrital zircons from Tethyan Himalaya (TH) strata, Lesser Himalaya (LH) strata, Cr...
The Lesser Himalaya is a key tectonostratigraphic zone of the Himalayan fold-thrust belt; however, i...
The Jurassic-Cretaceous (Upper Tethyan) flysch well exposed in the Thakkhola Section, Nepal, was dep...
The Jurassic-Cretaceous (Upper Tethyan) flysch well exposed in the Thakkhola Section, Nepal, was dep...
Despite being the largest active collisional orogen on Earth, the growth mechanism of the Himalaya r...