The Born approximation in the theory of the scattering of elastic waves by flaws
- 1 July 1977
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 48 (7), 2812-2819
- https://doi.org/10.1063/1.324142
Abstract
We used the integral equation formulation of the scattering of elastic waves to generate an approximate solution analogous to the Born approximation in quantum mechanics. This solution is attractive because of the ease with which it may be applied to scatterers of complicated shapes. We investigated the validity of the approximation by comparing it with exact results for spherical scatterers. Our conclusion for voids in elastic media is that the approximation describes well the scattering when the wavelength of the incident wave is approximately an order of magnitude larger than the scatterer and when the scattering is viewed in the backscattered directions. For many applications this range of validity is experimentally accessible. For elastic inclusions, however, where the properties of defect and host differed by 20–40%, the Born approximation is surprisingly good for all angles and even at short wavelengths.Keywords
This publication has 7 references indexed in Scilit:
- Scattering of a transverse elastic wave by an elastic sphere in a solid mediumJournal of Applied Physics, 1972
- Scattering of Elastic Waves from a Spherical Cavity in a Solid MediumJournal of Applied Physics, 1971
- Elastic Wave Velocities in Two-component SystemsIMA Journal of Applied Mathematics, 1967
- Numerical Computations of Elastic Scattering Cross SectionsJournal of Applied Physics, 1965
- Scattering of a Plane Transverse Wave by a Spherical Obstacle in an Elastic MediumJournal of Applied Physics, 1960
- The determination of the elastic field of an ellipsoidal inclusion, and related problemsProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1957
- Scattering of a Plane Longitudinal Wave by a Spherical Obstacle in an Isotropically Elastic SolidJournal of Applied Physics, 1956