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Negative-Index Refraction in a Lamellar Composite with Alternating Single Negative Layers

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arxiv physics/0508110 v1 pith:UTYT6NTH submitted 2005-08-17 physics.optics physics.gen-ph

Negative-Index Refraction in a Lamellar Composite with Alternating Single Negative Layers

classification physics.optics physics.gen-ph
keywords compositelamellareffectiveapproximationleft-handedmediumnegativenegative-index
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Negative-index refraction is achieved in a lamellar composite with epsilon-negative (ENG) and mu-negative (MNG) materials stacked alternatively. Based on the effective medium approximation, simultaneously negative effective permittivity and permeability of such a lamellar composite are obtained theoretically and further proven by full-wave simulations. Consequently, the famous left-handed metamaterial comprising split ring resonators and wires is interpreted as an analogy of such an ENG-MNG lamellar composite. In addition, beyond the effective medium approximation, the propagating field squeezed near the ENG/MNG interface is demonstrated to be left-handed surface waves with backward phase velocity.

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