We present a three-dimensional model of shear wave velocity for the upper mantle of China and the surrounding region by analyzing 50,338 vertical component multi-mode Rayleigh wave seismograms, recorded at 144 permanent and more than 300 temporary broadband stations in and around China. The procedure involves combination of 1-D path average models obtained by modeling each Rayleigh waveform up to the 4th higher mode in a tomographic inversion scheme. The dense station network and the use of multi-mode analysis help to achieve a lateral resolution of a few hundred kilometers down to 400 km depth. The seismic lithosphere, as it is defined by the crust and the high velocity mantle lid, is to the first order thin in east China and thick in the ...
Using data from more than 2000 seismic stations from multiple networks arrayed throughout China (CEA...
The deep structure of the lithosphere\u2013asthenosphere system, as imaged from geophysical data, of...
Abstract We have determined the three-dimensional P-wave velocity structure beneath the north–south ...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
[1] The India-Eurasia collision and the decratonization of the North China Craton have drawn much at...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
We present a new Sv-velocity model of the upper mantle under East and Southeast Asia con-strained by...
The objective of this project is to use a combination of travel-time and surface wave tomography to ...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
We have imaged the lithospheric structure beneath the central and western North China Craton (NCC) w...
Average a priori shear velocity models are constructed for the Tien Shan, Tarim basin, Pamir-Hindu K...
A 3-D shear velocity model of the crust and uppermost mantle to a depth of 100 km is presented benea...
Using data from more than 2000 seismic stations from multiple networks arrayed throughout China (CEA...
The deep structure of the lithosphere\u2013asthenosphere system, as imaged from geophysical data, of...
Abstract We have determined the three-dimensional P-wave velocity structure beneath the north–south ...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
We present a three-dimensional model of shear wave velocity for the upper mantle of China and the su...
[1] The India-Eurasia collision and the decratonization of the North China Craton have drawn much at...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
We present a new Sv-velocity model of the upper mantle under East and Southeast Asia con-strained by...
The objective of this project is to use a combination of travel-time and surface wave tomography to ...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
We have imaged the lithospheric structure beneath the central and western North China Craton (NCC) w...
Average a priori shear velocity models are constructed for the Tien Shan, Tarim basin, Pamir-Hindu K...
A 3-D shear velocity model of the crust and uppermost mantle to a depth of 100 km is presented benea...
Using data from more than 2000 seismic stations from multiple networks arrayed throughout China (CEA...
The deep structure of the lithosphere\u2013asthenosphere system, as imaged from geophysical data, of...
Abstract We have determined the three-dimensional P-wave velocity structure beneath the north–south ...