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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Online Access: | https://doi.org/10.1515/anona-2017-0146 |
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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 |
_version_ |
1717769810625953792 |