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Minimally asymmetric state conversion around exceptional singularities in a specialty optical microcavity
Journal article   Peer reviewed

Minimally asymmetric state conversion around exceptional singularities in a specialty optical microcavity

Arnab Laha, Abhijit Biswas and Somnath Ghosh
Journal of optics (2010), Vol.21(2), pp.025201/1-025201/10
01/02/2019

Abstract

avoided resonance crossing exceptional points microcavity devices mode-converters optical resonators
Exploiting scattering matrix (S-matrix) formalism, a unique route for manipulating the exceptional points (EPs) has been reported in a trilayer open optical microcavity with non-uniform real refractive index. The boundaries of the intermediate index layer are appropriately tapered. The cavity is partially pumped by a transverse distribution of a balanced gain-loss profile. With the strict restriction of balanced gain-loss, controlling infinitesimally small variation of gain-coefficient with simultaneous tapering parameter an EP has been encountered; which is being encircled in cavity parameter space to study dynamics of the coupled states around the EP in the context of robust selective flip-of-state phenomena with lower-asymmetry in state conversion efficiencies. Such a specialty trilayer microcavity with tunable width is reported for the first time; which turns out to be a specific approach to achieve maximum efficiency in conversion with minimum asymmetry. Considering suitable state-of-the-art techniques, this exclusive proposal may open up a fabrication feasible platform for device level implementation of system control exploiting EPs.

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