AbstractThis work answers a number of questions about the relationship between time-domain and frequency-domain solutions of the acoustic equation. A time-domain Green's function is constructed by a semigroup approach that leads to large-time growth estimates. The Fourier transform of this solution is also a solution of the Lippmann-Schwinger equation; this connection shows how to interpret the the delta functions that arise in the time-domain theory
Time-harmonic acoustic wave propagation in an ocean with depth-dependent background sound speed can ...
The wave equation (#partial deriv#_t"2 + H) u = 0 with H: = f"2(x) "n#SIGMA#_j_,_k_=_...
In this letter, a procedure for the calculation of transmission loss maps from numerical simulations...
AbstractThis work answers a number of questions about the relationship between time-domain and frequ...
Impedance and admittance relationships in acoustics are commonly given in their frequency-domain rep...
International audienceConsider two media separated by a plane interface, a time- dependent source F(...
This thesis focuses on the solution of causal, time-dependent wave propagation and scattering proble...
A time-dependent finite difference formulation to the inhomogeneous wave equation is derived for pla...
We deal with the stability issue for the determination of outgoing time-harmonic acoustic waves from...
The article of record as published may be found at https://doi.org/10.1121/1.400180Using the princip...
We have developed a von Neumann stability and dispersion analysis of two time-integration techniques...
The propagation of acoustic or ultrasonic pulses and waves in 1-D media with continuous inhomogeneit...
International audienceTime domain responses of porous media have been studied by some authors, but g...
Solutions to ocean acoustic scattering problems are often formulated in the frequency domain, which ...
AbstractA brief mathematical summary of several problems occuring in the propagation and scattering ...
Time-harmonic acoustic wave propagation in an ocean with depth-dependent background sound speed can ...
The wave equation (#partial deriv#_t"2 + H) u = 0 with H: = f"2(x) "n#SIGMA#_j_,_k_=_...
In this letter, a procedure for the calculation of transmission loss maps from numerical simulations...
AbstractThis work answers a number of questions about the relationship between time-domain and frequ...
Impedance and admittance relationships in acoustics are commonly given in their frequency-domain rep...
International audienceConsider two media separated by a plane interface, a time- dependent source F(...
This thesis focuses on the solution of causal, time-dependent wave propagation and scattering proble...
A time-dependent finite difference formulation to the inhomogeneous wave equation is derived for pla...
We deal with the stability issue for the determination of outgoing time-harmonic acoustic waves from...
The article of record as published may be found at https://doi.org/10.1121/1.400180Using the princip...
We have developed a von Neumann stability and dispersion analysis of two time-integration techniques...
The propagation of acoustic or ultrasonic pulses and waves in 1-D media with continuous inhomogeneit...
International audienceTime domain responses of porous media have been studied by some authors, but g...
Solutions to ocean acoustic scattering problems are often formulated in the frequency domain, which ...
AbstractA brief mathematical summary of several problems occuring in the propagation and scattering ...
Time-harmonic acoustic wave propagation in an ocean with depth-dependent background sound speed can ...
The wave equation (#partial deriv#_t"2 + H) u = 0 with H: = f"2(x) "n#SIGMA#_j_,_k_=_...
In this letter, a procedure for the calculation of transmission loss maps from numerical simulations...