Plasmonic and metamaterial cloaking: physical mechanisms and potentials
Плазмонное и метаматериальное маскирование: физические механизмы и перспективы
2008-08-19
SCID: 54.1/8wac5tch
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anomalous localized resonancescoordinate-transformation cloakingmetamaterial cloakingplasmonic cloakingscattering cancellation
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Abstract (AI)
Artificial materials, metamaterials and plasmonic media have recently received tremendous attention from the scientific communities, media and general public, following novel ideas and suggestions for their potential use in a variety of applications such as cloaking. Here we briefly review and highlight some of the available solutions for invisibility and cloaking that employ metamaterials and plasmonic materials at various frequencies. We briefly overview some of the different cloaking mechanisms recently proposed in the literature, such as plasmonic cloaking based on scattering cancellation, coordinate-transformation cloaking and anomalous localized resonances for cloaking, in particular providing some details for scattering-cancellation-based plasmonic cloaking. We mention the main analogies and differences among these various approaches, and we discuss some possible ideas for realizations and applications of these results, with particular attention to the physical phenomena involved.
Key Findings
1
It identifies three principal cloaking mechanisms: scattering cancellation using plasmonic materials, coordinate-transformation cloaking, and anomalous localized resonances.
2
Scattering-cancellation plasmonic cloaking is examined in greater detail as a mechanism for suppressing an object’s detectable scattering response.
3
The paper discusses potential realizations and applications of these cloaking concepts, emphasizing the physical mechanisms that enable them.
4
The paper reviews metamaterial- and plasmonic-based approaches to electromagnetic invisibility and cloaking across various frequency ranges.
5
The reviewed approaches share the goal of reducing detectability but differ in their underlying physical phenomena and implementation requirements.
Research Object
metamaterial- and plasmonic-material-based cloaking systems
Research Subject
physical cloaking mechanisms, including scattering cancellation, coordinate transformation, and anomalous localized resonances, and their potential realizations and applications
Publication Details
Publication Date
2008-08-19
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