The crust–mantle transition zone (CMTZ) is an important site for mass and energy exchange between the lower crust and the upper mantle. Several types of CMTZ show different P-wave velocity structures corresponding to different rock associations existing beneath the continent of China. (a) The CMTZ beneath the Tibet Plateau exhibits a grid-shaped seismic reflection characterized by random and reticular high and low seismic velocity lamellae. This seismic velocity structure (about 30 km in thickness) was inherited from crustal overthrust and overlapping during the Cenozoic collision between the Indian and Euro-Asian continents. The corresponding crustal movement is still very intense in this region. (b) The CMTZ underneath East China is usual...
[1] East Asia is one of the most tectonically active regions on Earth’s surface due to the collision...
[1] We collected and processed a large amount of high-quality broadband teleseismic waveform data re...
As the first large igneous province in China that is widely recognized by the international geoscien...
This paper addresses the velocity structure of the crust and upper mantle beneath southern China wit...
The crustal and upper mantle velocity structure in the northeastern Tibetan Plateau is obtained from...
The crust and upper mantle in mainland China were relatively densely probed with wide-angle seismic ...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
Abstract The mantle transition zone (MTZ) structure beneath eastern China is studied by using P-wave...
The objective of this project is to use a combination of travel-time and surface wave tomography to ...
Abstract:Using arrival data from seismic networks in western China, we inverted three-dimensional P-...
Abstract We have determined the three-dimensional P-wave velocity structure beneath the north–south ...
Broadband seismic data from the regional seismic network operated by the China Earthquake Administra...
We examine P-wave velocity structure at the base of the mantle beneath the western Pacific, near the...
[1] Two crustal cross sections through the eastern margin of the Tibetan Plateau are jointly determi...
[1] East Asia is one of the most tectonically active regions on Earth’s surface due to the collision...
[1] We collected and processed a large amount of high-quality broadband teleseismic waveform data re...
As the first large igneous province in China that is widely recognized by the international geoscien...
This paper addresses the velocity structure of the crust and upper mantle beneath southern China wit...
The crustal and upper mantle velocity structure in the northeastern Tibetan Plateau is obtained from...
The crust and upper mantle in mainland China were relatively densely probed with wide-angle seismic ...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
Abstract The mantle transition zone (MTZ) structure beneath eastern China is studied by using P-wave...
The objective of this project is to use a combination of travel-time and surface wave tomography to ...
Abstract:Using arrival data from seismic networks in western China, we inverted three-dimensional P-...
Abstract We have determined the three-dimensional P-wave velocity structure beneath the north–south ...
Broadband seismic data from the regional seismic network operated by the China Earthquake Administra...
We examine P-wave velocity structure at the base of the mantle beneath the western Pacific, near the...
[1] Two crustal cross sections through the eastern margin of the Tibetan Plateau are jointly determi...
[1] East Asia is one of the most tectonically active regions on Earth’s surface due to the collision...
[1] We collected and processed a large amount of high-quality broadband teleseismic waveform data re...
As the first large igneous province in China that is widely recognized by the international geoscien...