Superlensing using complementary media and reflecting complementary media for electromagnetic waves

In this paper, we present the proof of superlensing an arbitrary object using complementary media and we study reflecting complementary media for electromagnetic waves. The analysis is based on the reflecting technique and new results on the compactness, existence, and stability for the Maxwell equa...

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Main Author: Nguyen Hoai-Minh
Format: Article
Language:English
Published: De Gruyter 2018-11-01
Series:Advances in Nonlinear Analysis
Subjects:
Online Access:https://doi.org/10.1515/anona-2017-0146
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spelling doaj-9c2fd61f19b841448b3fc72024577d2b2021-09-06T19:39:55ZengDe GruyterAdvances in Nonlinear Analysis2191-94962191-950X2018-11-017444946710.1515/anona-2017-0146Superlensing using complementary media and reflecting complementary media for electromagnetic wavesNguyen Hoai-Minh0Analysis and Applied Mathematics, Ecole Polytechnique Federale de Lausanne, Station 8, CH-1015Lausanne, SwitzerlandIn this paper, we present the proof of superlensing an arbitrary object using complementary media and we study reflecting complementary media for electromagnetic waves. The analysis is based on the reflecting technique and new results on the compactness, existence, and stability for the Maxwell equations with low regularity data.https://doi.org/10.1515/anona-2017-0146negative index materialssuperlensingcomplementary mediacloakinglocalized resonanceelectromagnetic waves35b34 35b35 35b40 35j05 78a25
collection DOAJ
language English
format Article
sources DOAJ
author Nguyen Hoai-Minh
spellingShingle Nguyen Hoai-Minh
Superlensing using complementary media and reflecting complementary media for electromagnetic waves
Advances in Nonlinear Analysis
negative index materials
superlensing
complementary media
cloaking
localized resonance
electromagnetic waves
35b34
35b35
35b40
35j05
78a25
author_facet Nguyen Hoai-Minh
author_sort Nguyen Hoai-Minh
title Superlensing using complementary media and reflecting complementary media for electromagnetic waves
title_short Superlensing using complementary media and reflecting complementary media for electromagnetic waves
title_full Superlensing using complementary media and reflecting complementary media for electromagnetic waves
title_fullStr Superlensing using complementary media and reflecting complementary media for electromagnetic waves
title_full_unstemmed Superlensing using complementary media and reflecting complementary media for electromagnetic waves
title_sort superlensing using complementary media and reflecting complementary media for electromagnetic waves
publisher De Gruyter
series Advances in Nonlinear Analysis
issn 2191-9496
2191-950X
publishDate 2018-11-01
description In this paper, we present the proof of superlensing an arbitrary object using complementary media and we study reflecting complementary media for electromagnetic waves. The analysis is based on the reflecting technique and new results on the compactness, existence, and stability for the Maxwell equations with low regularity data.
topic negative index materials
superlensing
complementary media
cloaking
localized resonance
electromagnetic waves
35b34
35b35
35b40
35j05
78a25
url https://doi.org/10.1515/anona-2017-0146
work_keys_str_mv AT nguyenhoaiminh superlensingusingcomplementarymediaandreflectingcomplementarymediaforelectromagneticwaves
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