Photonic modes in synthetic photonic lattices localized due to nontrivial gauge field circulation

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Pankov, A.
Vatnik, I. D.
Churkin, D. V.
Sukhorukov, Andrey

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SPIE

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One of concepts giving opportunities for studying of topological insulators in non-magnetic materials, or creating scattering-immune in optical waveguides is creation of synthetic gauge fields in photonic systems. It was shown that gauge fields shift the band-gaps of optical waves, which can be applied to implement one-way nonreciprocal waveguides, even though both the waveguide core and cladding are in a topologically trivial state [1]. In our work we propose a method to create a gauge field in a synthetic photonic mesh lattice - an optical device proved its high versatility for optical experiments [2]. We demonstrate presence of localized modes due to nontrivial gauge field circulation.

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Proceedings of SPIE - The International Society for Optical Engineering

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Open Access

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