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Invisible waveguides on metal plates for plasmonic analogues of electromagnetic wormholes

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arxiv 1102.2372 v3 pith:KMFEHV6A submitted 2011-02-11 physics.optics

Invisible waveguides on metal plates for plasmonic analogues of electromagnetic wormholes

classification physics.optics
keywords metalsurfaceelectromagneticplasmonictoroidalformerinvisiblelatter
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We introduce two types of toroidal metamaterials which are invisible to surface plasmon polaritons (SPPs) propagating on a metal surface. The former is a toroidal handlebody bridging remote holes on the metal surface: It works as a kind of plasmonic counterpart of electromagnetic wormholes. The latter is a toroidal ring lying on the metal surface: This bridges two disconnected metal surfaces i.e. It connects a thin metal cylinder to a flat metal surface with a hole. Full-wave numerical simulations demonstrate that an electromagnetic field propagating inside these metamaterials does not disturb the propagation of SPPs at the metal surface. A multilayered design of these devices is proposed, based on effective medium theory for a set of reduced parameters: The former plasmonic analogue of electromagnetic wormhole requires homogeneous isotropic magnetic layers, while the latter merely requires dielectric layers.

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