Seismic travel-time tomography of the mantle under SE Asia reveals patterns of subduction-related seismic P-wave velocity anomalies that are of great value in helping to understand the region's tectonic development. We discuss tomography and tectonic interpretations of an area centred on Indonesia and including Malaysia, parts of the Philippines, New Guinea and northern Australia. We begin with an explanation of seismic tomography and causes of velocity anomalies in the mantle, and discuss assessment of model quality for tomographic models created from P-wave travel times. We then introduce the global P-wave velocity anomaly model UU-P07 and the tectonic model used in this paper and give an overview of previous interpretations of mantle str...
Details of global plate models decrease back in geological time, such that approximately one-third o...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
[1] East Asia is one of the most tectonically active regions on Earth's surface due to the collision...
Seismic travel-time tomography of the mantle under SE Asia reveals patterns of subduction-related se...
We investigated mantle structure beneath the Indonesian region by means of tomographic inversions of...
The southeast (SE) Asia - Australia collision zone is one of the most tectonically active and seismo...
In this paper, we present a high resolution 3-D tomographic model of the upper mantle obtained from ...
A high-resolution 3D P-wave velocity model of the mantle beneath eastern Asia was obtained through p...
We use travel-times from a temporary seismic deployment of 30 broadband seismometers and a national ...
The main objective of this research is to understand the seismic structure beneath Sumatra and its s...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
Tomographic images of the mantle beneath East Asia were obtained from the inversion of traveltime da...
We present the first continental-scale seismic model of the lithosphere and underlying mantle beneat...
[1] We present a three-dimensional, S velocity model of the SE Asian-western Pacific upper mantle wi...
Seismic tomography with a non-linear approach has been successfully applied to image the P-wave velo...
Details of global plate models decrease back in geological time, such that approximately one-third o...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
[1] East Asia is one of the most tectonically active regions on Earth's surface due to the collision...
Seismic travel-time tomography of the mantle under SE Asia reveals patterns of subduction-related se...
We investigated mantle structure beneath the Indonesian region by means of tomographic inversions of...
The southeast (SE) Asia - Australia collision zone is one of the most tectonically active and seismo...
In this paper, we present a high resolution 3-D tomographic model of the upper mantle obtained from ...
A high-resolution 3D P-wave velocity model of the mantle beneath eastern Asia was obtained through p...
We use travel-times from a temporary seismic deployment of 30 broadband seismometers and a national ...
The main objective of this research is to understand the seismic structure beneath Sumatra and its s...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
Tomographic images of the mantle beneath East Asia were obtained from the inversion of traveltime da...
We present the first continental-scale seismic model of the lithosphere and underlying mantle beneat...
[1] We present a three-dimensional, S velocity model of the SE Asian-western Pacific upper mantle wi...
Seismic tomography with a non-linear approach has been successfully applied to image the P-wave velo...
Details of global plate models decrease back in geological time, such that approximately one-third o...
We have produced a P-wave model of the upper mantle beneath Southeast (SE) Asia from reprocessed sho...
[1] East Asia is one of the most tectonically active regions on Earth's surface due to the collision...