The main results in the paper are the following. Theorem 1: The impact parameter of each needle with respect to the unknown sound soft domain can be calculated from the localized Dirichlet-to-Neumann map. Theorem 2: The same existence result holds for a sound hard domain. Theorem 3 and Corollary 3: The obstacle can be reconstructed from surface data.

Crosta, G. (2000). Mathematical Review MR1708203 Ikehata, M. Reconstruction of obstacle from boundary measurements. Wave Motion 30 (1999), no. 3, 205–223. MATHEMATICAL REVIEWS.

Mathematical Review MR1708203 Ikehata, M. Reconstruction of obstacle from boundary measurements. Wave Motion 30 (1999), no. 3, 205–223

CROSTA, GIOVANNI FRANCO FILIPPO
Primo
2000

Abstract

The main results in the paper are the following. Theorem 1: The impact parameter of each needle with respect to the unknown sound soft domain can be calculated from the localized Dirichlet-to-Neumann map. Theorem 2: The same existence result holds for a sound hard domain. Theorem 3 and Corollary 3: The obstacle can be reconstructed from surface data.
Recensione in rivista
Inverse problems; Dirichlet-to-Neumann map; Helmholtz equation
English
2000
none
Crosta, G. (2000). Mathematical Review MR1708203 Ikehata, M. Reconstruction of obstacle from boundary measurements. Wave Motion 30 (1999), no. 3, 205–223. MATHEMATICAL REVIEWS.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/92974
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