Wave propagators for transient waves in one-dimensional media
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Publication:1279026
DOI10.1016/0165-2125(96)00008-XzbMath0918.35034MaRDI QIDQ1279026
Publication date: 28 February 1999
Published in: Wave Motion (Search for Journal in Brave)
Scattering theory for PDEs (35P25) Integral representations of solutions to PDEs (35C15) Geometric optics (78A05)
Related Items (4)
Wave propagators for the Timoshenko beam ⋮ Wave propagation in multilayered anisotropic solids ⋮ A wave splitting approach to thermoelastic pulses in anisotropic media. ⋮ ``The source problem -- Transient waves propagating from internal sources in non-stationary media
Cites Work
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- Obtaining scattering kernels using invariant imbedding
- A Green's function approach to the determination of internal fields
- Wave splitting in the time domain for a radially symmetric geometry
- Time domain Green functions technique for a point source over a dissipative stratified half-space with a phase velocity mismatch at the surface
- Transient electromagnetic wave propagation in transverse periodic media
- Direct and inverse scattering in the time domain via invariant imbedding equations
- An electromagnetic inverse problem for dispersive media
- On the Relation of Transmission-Line Theory to Scattering and Transfer
- Wave splitting and the reflection operator for the wave equation in R3
- Direct and inverse scattering in the time domain for a dissipative wave equation. I. Scattering operators
- Direct and inverse scattering in the time domain for a dissipative wave equation. II. Simultaneous reconstruction of dissipation and phase velocity profiles
- Inverse scattering for viscoelastic media using transmission data
- Factorization of the dissipative wave equation and inverse scattering
- Invariant imbedding and wave splitting in R 3 : II. The Green function approach to inverse scattering
- Time-domain wave splitting of Maxwell’s equations
- Simultaneous reconstruction of material and transient source parameters using the invariant imbedding method
- A ‘‘compact Green function’’ approach to the time-domain direct and inverse problems for a stratified dissipative slab
- Wave splitting of the telegraph equation in R 3 and its application to inverse scattering
- Direct and inverse scattering from dispersive media
- Inverse scattering for anisotropic mirror image symmetric media
- Direct and inverse scattering in the time domain for a dissipative wave equation. III. Scattering operators in the presence of a phase velocity mismatch
- Propagation of transient electromagnetic waves in time-varying media-direct and inverse scattering problems
- Design of reflectionless media for transient electromagnetic waves
- Determination of the permittivity and conductivity in R3 using wave splitting of Maxwell’s equations
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