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Optical isolation with nonlinear topological photonics

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arxiv 1705.06921 v1 pith:UGDWZ7Q2 submitted 2017-05-19 physics.optics cond-mat.mes-hall

Optical isolation with nonlinear topological photonics

classification physics.optics cond-mat.mes-hall
keywords nonlineartopologicaltransmittancearrayimplementingisolationlatticemodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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It is shown that the concept of topological phase transitions can be used to design nonlinear photonic structures exhibiting power thresholds and discontinuities in their transmittance. This provides a novel route to devising nonlinear optical isolators. We study three representative designs: (i) a waveguide array implementing a nonlinear 1D Su-Schrieffer-Heeger (SSH) model, (ii) a waveguide array implementing a nonlinear 2D Haldane model, and (iii) a 2D lattice of coupled-ring waveguides. In the first two cases, we find a correspondence between the topological transition of the underlying linear lattice and the power threshold of the transmittance, and show that the transmission behavior is attributable to the emergence of a self-induced topological soliton. In the third case, we show that the topological transition produces a discontinuity in the transmittance curve, which can be exploited to achieve sharp jumps in the power-dependent isolation ratio.

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