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1. Identity statement
Reference TypeJournal Article
Sitemtc-m21b.sid.inpe.br
Holder Codeisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identifier8JMKD3MGP3W34P/3JA2F68
Repositorysid.inpe.br/mtc-m21b/2015/04.08.13.22   (restricted access)
Last Update2015:04.08.13.23.29 (UTC) administrator
Metadata Repositorysid.inpe.br/mtc-m21b/2015/04.08.13.22.06
Metadata Last Update2018:06.04.02.55.22 (UTC) administrator
DOI10.1016/j.photonics.2014.12.003
ISSN1569-4410
Citation KeyHasarBarKayKarErt:2015:InTrRe
TitleInvestigation of transmitted, reflected, and absorbed powers of periodic and aperiodic multilayered structures composed of bi-anisotropic metamaterial slab and conventional material
Year2015
MonthJan.
Access Date2024, May 19
Type of Workjournal article
Secondary TypePRE PI
Number of Files1
Size2941 KiB
2. Context
Author1 Hasar, Ugur Cem
2 Barroso de Castro, Joaquim José
3 Kaya, Y.
4 Karacali, Tehvit
5 Ertugrul, M.
Resume Identifier1
2 8JMKD3MGP5W/3C9JHFA
Group1
2 LAP-CTE-INPE-MCTI-GOV-BR
Affiliation1 University of Gaziantep
2 Instituto Nacional de Pesquisas Espaciais (INPE)
3 Bayburt University
4 Ataturk University
5 Ataturk University
Author e-Mail Address1 uchasar@gantep.edu.tr
2 barroso@plasma.inpe.br
3
4 tevhit@atauni.edu.tr
JournalPhotonics and Nanostructures - Fundamentals and Applications
Volume13
Pages106-119
History (UTC)2015-04-08 13:22:06 :: simone -> administrator ::
2015-05-15 19:06:08 :: administrator :: 2014 -> 2015
2018-06-04 02:55:22 :: administrator -> simone :: 2015
3. Content and structure
Is the master or a copy?is the master
Content Stagecompleted
Transferable1
Content TypeExternal Contribution
Version Typepublisher
KeywordsPower analysis
Bi-anisotropic
Metamaterials
Conventional materials
AbstractIn this study, we investigate transmitted, reflected, and absorbed powers in forward and backward directions of periodic and aperiodic multilayered structures composed of bi-anisotropic metamaterial (MM) slab and conventional material. Aperiodic multilayered structure is realized by a change in thickness of any bi-anisotropic MM slab or of any conventional material. From this analysis, we note the following key results. First, identical (non-identical) forward and backward transmitted (reflected and absorbed) powers are observed for the analyzed periodic and aperiodic multilayered structures due to reciprocity (reflection-asymmetry) of bi-anisotropic MM slabs. Second, thickness-resonance phenomenon of conventional materials produces some peaks in the transmitted powers of periodic multilayered structures aside from the resonance frequency region of bi-anisotropic MM slabs. Third, each thickness-resonance frequency splits into many frequencies upon increasing the number of sections of periodic multilayered structures (no splitting when number of periods is one). Fourth, while the effect of changing the thickness of any bi-anisotropic MM slab within the aperiodic multilayered structure has no considerable effect around the resonance region of bi-anisotropic MM slabs (resonance of resonating structures such as MM slabs does not change with thickness), the same change in thickness of the conventional material drastically alters forward/backward reflected and absorbed powers aside from the resonance region of bi-anisotropic MM slabs (thickness-resonance totally depends on the value of thickness of conventional materials). The outcomes presented here can be particularly useful for propagation-related applications requiring cascade connection of various MM slabs.
AreaFISPLASMA
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Mirror Repositoryurlib.net/www/2011/03.29.20.55
Next Higher Units8JMKD3MGPCW/3ET2RFS
Citing Item Listsid.inpe.br/bibdigital/2013/09.25.21.49 1
DisseminationWEBSCI; PORTALCAPES; COMPENDEX; SCOPUS.
Host Collectionsid.inpe.br/mtc-m21b/2013/09.26.14.25.20
6. Notes
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