AbstractAcoustic, electromagnetic and elastic scattering have been described by the T-matrix method of Waterman. High-frequency calculations and the description of scattering from general bounded surfaces can give rise to large sets of basis states, which in turn necessitate computation of large ill-conditioned matrices. Difficulties in handling these matrices place limitations on the T-matrix and null-field methods. A number of numerical and theoretical techniques are presented which overcome these difficulties and extend the range of applicability of these methods beyond the conventional approach
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
AbstractAcoustic, electromagnetic and elastic scattering have been described by the T-matrix method ...
AbstractClassic scattering from objects of arbitrary shape must generally be treated by numerical me...
AbstractClassic scattering from objects of arbitrary shape must generally be treated by numerical me...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
In the last ten years several numerical methods have been developed for the solution of elastic wave...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
AbstractAcoustic, electromagnetic and elastic scattering have been described by the T-matrix method ...
AbstractClassic scattering from objects of arbitrary shape must generally be treated by numerical me...
AbstractClassic scattering from objects of arbitrary shape must generally be treated by numerical me...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...
In the last ten years several numerical methods have been developed for the solution of elastic wave...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The acoustic scattering properties of an obstacle are completely described by its infinite acoustic ...
The infinite T-matrix completely describes the acoustic scattering properties of an obstacle. The T-...