Pressure-temperature-time (P-T-t) conditions of metamorphism have been determined in the Annapurna region of central Nepal that place new constraints on the structural and tectonic evolution of the Himalayan orogenic wedge. Peak P-T conditions increase structurally upward: ∼525°C and 8 kbar in the Lesser Himalayan sequence, 650°C and 12 kbar at the base of the Greater Himalayan sequence across the Main Central thrust, 750°C and 12 kbar in the middle of the Greater Himalayan sequence, and 775°C and 13 kbar near the top of the Greater Himalayan sequence. Metamorphic monazite ages in the Greater Himalayan sequence also increase structurally upward: 16–21 Ma for subsolidus growth at the base of the Greater Himalayan sequence to ∼25 Ma for peak-...
The Himalayan orogen represents a “Composite Orogenic System” in which channel flow, wedge extrusion...
The Himalayan orogen represents a “Composite Orogenic System” in which channel flow, wedge extrusion...
The Greater Himalayan Sequence (GHS) is the exhumed metamorphic core of the Himalayan Belt. This tec...
Pressure-temperature-time (P-T-t) conditions of metamorphism have been determined in the Annapurna r...
Pressure-temperature-time (P-T-t) conditions of metamorphism have been determined in the Annapurna r...
Over the past two decades, several competing dynamic models have emerged to explain the tectonic evo...
Recent models for the evolution of the Himalaya and adjacent regions have changed our understanding ...
A new synthesis of pressure-temperature conditions and pressure-temperature-time (P-T-t) paths is pr...
Understanding the recent history of the Himalayan orogen not only helps elucidates near-surface conv...
The metamorphic core of the Himalayan orogen, or Greater Himalayan sequence, is a northward tapering...
In this paper we tackle some of the outstanding problems of the Himalaya, in particular the external...
The recent identification of multiple strike-parallel discontinuities within the exhumed Himalayan m...
The recent identification of multiple strike-parallel discontinuities within the exhumed Himalayan m...
Field observations of the Greater Himalayan Sequence in Eastern Nepal demonstrate a ductile, highly ...
Field observations of the Greater Himalayan Sequence in Eastern Nepal demonstrate a ductile, highly ...
The Himalayan orogen represents a “Composite Orogenic System” in which channel flow, wedge extrusion...
The Himalayan orogen represents a “Composite Orogenic System” in which channel flow, wedge extrusion...
The Greater Himalayan Sequence (GHS) is the exhumed metamorphic core of the Himalayan Belt. This tec...
Pressure-temperature-time (P-T-t) conditions of metamorphism have been determined in the Annapurna r...
Pressure-temperature-time (P-T-t) conditions of metamorphism have been determined in the Annapurna r...
Over the past two decades, several competing dynamic models have emerged to explain the tectonic evo...
Recent models for the evolution of the Himalaya and adjacent regions have changed our understanding ...
A new synthesis of pressure-temperature conditions and pressure-temperature-time (P-T-t) paths is pr...
Understanding the recent history of the Himalayan orogen not only helps elucidates near-surface conv...
The metamorphic core of the Himalayan orogen, or Greater Himalayan sequence, is a northward tapering...
In this paper we tackle some of the outstanding problems of the Himalaya, in particular the external...
The recent identification of multiple strike-parallel discontinuities within the exhumed Himalayan m...
The recent identification of multiple strike-parallel discontinuities within the exhumed Himalayan m...
Field observations of the Greater Himalayan Sequence in Eastern Nepal demonstrate a ductile, highly ...
Field observations of the Greater Himalayan Sequence in Eastern Nepal demonstrate a ductile, highly ...
The Himalayan orogen represents a “Composite Orogenic System” in which channel flow, wedge extrusion...
The Himalayan orogen represents a “Composite Orogenic System” in which channel flow, wedge extrusion...
The Greater Himalayan Sequence (GHS) is the exhumed metamorphic core of the Himalayan Belt. This tec...