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Interaction-induced two-photon edge states in extended Hubbard model realized in a cavity array

Published 7 Feb 2017 in cond-mat.mes-hall, physics.optics, and quant-ph | (1702.02045v1)

Abstract: We study theoretically two-photon states in a periodic array of coupled cavities with both on-site and nonlocal Kerr-type nonlinearities. In the absence of nonlinearity the structure is topologically trivial and possesses no edge states. The interplay of two nonlinear interaction mechanisms described by the extended Hubbard model facilitates formation of edge states of bound photon pairs. Numerical and exact analytical results for the two-photon wave functions are presented. Our findings thus shed light onto the edge states of composite particles and their localization properties.

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