Existence Loci Of Bound States In The Continuum In The Parameter Space Of Anisotropic Planar Structures

european quantum electronics conference(2019)

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摘要
Bound states in the continuum (BICs), first predicted in the field of quantum physics [1], are localized radiationless states existing in the part of the spectrum that corresponds to radiative modes. BICs are a general wave phenomenon and have recently been found in photonic systems [2]. They are known to exist in photonic structures in almost-pure transverse-electric (TE) or transverse-magnetic (TM) states, at fixed frequencies and propagation directions [3]. More recently, we have shown the existence of fully hybrid BICs alongside pure TE/TM BICs in planar structures containing uniaxial materials in both symmetric and asymmetric geometries [4]. BICs occur when we decouple the radiation mode from the continuum by suppressing the radiation channel. This can happen in anisotropic planar structures due to polarization separation or destructive interference. The fact that interferometric BICs change propagation direction with frequency suggests that the structure gives itself to potential applications as spatial and spectral filters.
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symmetric geometries,asymmetric geometries,radiation mode,radiation channel,anisotropic planar structures,existence loci,bound states,parameter space,quantum physics,radiationless states,radiative modes,general wave phenomenon,photonic systems,photonic structures,transverse-electric state,transverse-magnetic state,interferometric BIC change propagation direction,fully hybrid BIC,spatial filter,spectral filter
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