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Finite-frequency sensitivity kernels for global seismic wave propagation based upon adjoint methods
Qinya Liu,
Jeroen Tromp
Geosciences
Princeton Institute for Computational Science and Engineering
Research output
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Contribution to journal
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Article
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peer-review
114
Scopus citations
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Dive into the research topics of 'Finite-frequency sensitivity kernels for global seismic wave propagation based upon adjoint methods'. Together they form a unique fingerprint.
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Chemical Compounds
Anelasticity
47%
Seismic Wave
100%
Simulation
14%
Surface
7%
Surface Wave
36%
Time
16%
Volume
13%
Earth & Environmental Sciences
adjoint method
66%
anelasticity
10%
discontinuity
5%
fluid
7%
hydrostatics
6%
inversion
4%
method
5%
parameter
2%
perturbation
10%
seismic wave
45%
simulation
2%
surface wave
6%
topography
4%
wave propagation
43%
Physics & Astronomy
anelasticity
8%
discontinuity
5%
equations of motion
4%
fluids
6%
gradients
3%
hydrostatics
6%
inversions
4%
Lagrange multipliers
7%
perturbation
7%
rays
9%
seismic waves
60%
sensitivity
26%
simulation
2%
surface waves
5%
topography
5%
wave propagation
38%