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Bound states in the continuum accompanied by avoided crossings in leaky-mode photonic lattices

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arxiv 2007.00371 v1 pith:JWJ2FYIR submitted 2020-07-01 physics.optics

Bound states in the continuum accompanied by avoided crossings in leaky-mode photonic lattices

classification physics.optics
keywords avoidedphotoniccrossingslatticesaccompaniedmodesresonancesasymmetric
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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When two nonorthogonal resonances are coupled to the same radiation channel, avoided crossing arises and a bound state in the continuum (BIC) appears in parametric space. This paper presents numerical and analytical results on the properties of avoided crossing and BIC due to the coupled guided-mode resonances in one-dimensional leaky-mode photonic lattices with slab geometry. In symmetric photonic lattices with up-down mirror symmetry, Friedrich-Wintgen BICs with infinite lifetime are accompanied by avoided crossings due to the coupling between two guided modes with the same transverse parity. In asymmetric photonic lattices with broken up-down mirror symmetry, quasi-BICs with finite lifetime appear with avoided crossings because radiating waves from different modes cannot be completely eliminated. We also show that unidirectional-BICs are accompanied by avoided crossings due to guided-mode resonances with different transverse parities in asymmetric photonic lattices. The Q factor of a unidirectional-BIC is finite, but its radiation power in the upward or downward direction is significantly smaller than that in the opposite direction. Our results may be helpful in engineering BICs and avoided crossings in diverse photonic systems that support leaky modes.

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