Stability of continuation and obstacle problems in acoustic and electromagnetic scattering

Study of the Cauchy problem for Helmholtz equation is motivated by the inverse scattering theory and more generally by remote sensing. In this dissertation the increased stability of the Cauchy problem for Helmholtz equation and the Maxwell's system is investigated with varying frequency. Here...

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Main Author: Subbarayappa, Deepak Aralumallige
Other Authors: Isakov, Victor, 1947-
Format: Others
Language:en_US
Published: Wichita State University 2011
Subjects:
Online Access:http://hdl.handle.net/10057/3645
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spelling ndltd-WICHITA-oai-soar.wichita.edu-10057-36452013-04-19T21:00:25ZStability of continuation and obstacle problems in acoustic and electromagnetic scatteringSubbarayappa, Deepak AralumalligeElectronic dissertationsStudy of the Cauchy problem for Helmholtz equation is motivated by the inverse scattering theory and more generally by remote sensing. In this dissertation the increased stability of the Cauchy problem for Helmholtz equation and the Maxwell's system is investigated with varying frequency. Here it has been shown that the the stability of continuation is improving with the increasing frequency. The continuation is inside the convex hull of the surface where the Cauchy data is given. This has been demonstrated by numerical experiments with simple geometry. When we continue outside of the convex hull, the subspace of stable solutions is growing with frequency. This is also demonstrated by numerical experiments where we reconstruct the density function of the single layer potential. Another problem that is presented here is the electromagnetic obstacle scattering problem, with variable frequency. Here the existence and uniqueness of the solution to the forward problem is presented and the analytic dependence of the solution on the frequency is proved.Thesis (Ph.D.)--Wichita State University, College of Liberal Arts and Sciences, Dept. of Mathematics and StatisticsWichita State UniversityIsakov, Victor, 1947-2011-08-19T13:55:37Z2011-08-19T13:55:37Z20102010-12Dissertationx, 67 p.d10020http://hdl.handle.net/10057/3645en_USCopyright Deepak Aralumallige Subbarayappa, 2010. All rights reserved
collection NDLTD
language en_US
format Others
sources NDLTD
topic Electronic dissertations
spellingShingle Electronic dissertations
Subbarayappa, Deepak Aralumallige
Stability of continuation and obstacle problems in acoustic and electromagnetic scattering
description Study of the Cauchy problem for Helmholtz equation is motivated by the inverse scattering theory and more generally by remote sensing. In this dissertation the increased stability of the Cauchy problem for Helmholtz equation and the Maxwell's system is investigated with varying frequency. Here it has been shown that the the stability of continuation is improving with the increasing frequency. The continuation is inside the convex hull of the surface where the Cauchy data is given. This has been demonstrated by numerical experiments with simple geometry. When we continue outside of the convex hull, the subspace of stable solutions is growing with frequency. This is also demonstrated by numerical experiments where we reconstruct the density function of the single layer potential. Another problem that is presented here is the electromagnetic obstacle scattering problem, with variable frequency. Here the existence and uniqueness of the solution to the forward problem is presented and the analytic dependence of the solution on the frequency is proved. === Thesis (Ph.D.)--Wichita State University, College of Liberal Arts and Sciences, Dept. of Mathematics and Statistics
author2 Isakov, Victor, 1947-
author_facet Isakov, Victor, 1947-
Subbarayappa, Deepak Aralumallige
author Subbarayappa, Deepak Aralumallige
author_sort Subbarayappa, Deepak Aralumallige
title Stability of continuation and obstacle problems in acoustic and electromagnetic scattering
title_short Stability of continuation and obstacle problems in acoustic and electromagnetic scattering
title_full Stability of continuation and obstacle problems in acoustic and electromagnetic scattering
title_fullStr Stability of continuation and obstacle problems in acoustic and electromagnetic scattering
title_full_unstemmed Stability of continuation and obstacle problems in acoustic and electromagnetic scattering
title_sort stability of continuation and obstacle problems in acoustic and electromagnetic scattering
publisher Wichita State University
publishDate 2011
url http://hdl.handle.net/10057/3645
work_keys_str_mv AT subbarayappadeepakaralumallige stabilityofcontinuationandobstacleproblemsinacousticandelectromagneticscattering
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