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Hidden progress: broadband plasmonic invisibility

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arxiv 1003.5476 v1 pith:CRN3XJLK submitted 2010-03-29 physics.optics

Hidden progress: broadband plasmonic invisibility

classification physics.optics
keywords cloakingplasmonicsurfacebandwidthcontroldielectricinvisibilitymirror
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The key challenge in current research into electromagnetic cloaking is to achieve invisibility over an extended bandwidth. There has been significant progress towards this using the idea of cloaking by sweeping under the carpet of Li and Pendry, with dielectric structures superposed on a mirror. Here, we show that we can harness surface plasmon polaritons at a metal surface structured with a dielectric material to obtain a unique control of their propagation. We exploit this to control plasmonic coupling and demonstrate both theoretically and experimentally cloaking over an unprecedented bandwidth (650-900 nm). Our non-resonant plasmonic metamaterial allows a curved reflector to mimic a flat mirror. Our theoretical predictions are validated by experiments mapping the surface light intensity at the wavelength 800 nm.

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