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Photonic Chern insulator through homogenization of an array of particles

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arxiv 1707.03365 v1 pith:RJI3BRV3 submitted 2017-07-11 physics.optics cond-mat.dis-nnphysics.app-ph

classification physics.opticscond-mat.dis-nnphysics.app-ph
keywords arraycylindersnon-trivialbandchernhomogenizationincludinginsulator
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We propose a route towards creating a metamaterial that behaves as a photonic Chern insulator, through homogenization of an array of gyromagnetic cylinders. We show that such an array can exhibit non-trivial topological effects, including topologically non-trivial band gaps and one-way edge states, when it can be homogenized to an effective medium model that has the Berry curvature strongly peaked at the wavevector k=0. The non-trivial band topology depends only on the parameters of the cylinders and the cylinders' density, and can be realized in a wide variety of different lattices including periodic, quasi-periodic and random lattices. Our system provides a platform to explore the interplay between disorder and topology and also opens a route towards synthesis of topological meta-materials based on the self-assembly approach.

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