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Parametrically encircled higher-order exceptional points in anti-parity-time symmetric optical microcavities

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arxiv 2405.08850 v2 pith:Q7VM6DPD submitted 2024-05-14 physics.optics

classification physics.optics
keywords physicsapt-symmetricdesignedexceptionalhigher-orderopticalsymmetryanti-parity-time
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The fascinating realm of non-Hermitian physics with the interplay of parity (P) and time-reversal (T) symmetry has been witnessing immense attention in exploring unconventional physics at Exceptional Point (EP) singularities. Particularly, the physics of PT-symmetry, anti-PT (APT)-symmetry, and the emergence of EPs have ignited fervor in photonics. Beyond the conventional relation between EP and PT-symmetric phase transitions, this study delves into hosting higher-order EPs in a specially designed APT-symmetric Fabry-P\'erot-type microcavity. We unveil the captivating physics of the parametric encirclement schemes to explore the branch-point behaviors of EPs up to order three in terms of successive state-flipping, while optimizing the designed cavity under APT-symmetric constraints. The insights from our findings are poised to boost research in optical metamaterials, meeting the demands of APT-symmetry and paving the way for a novel class of photonic devices.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Evidence for Exceptional Points as Topological Defects

    quant-ph 2024-12 conditional novelty 5.0 of 10

    Encircling an exceptional point once changes a transported quantum state by an order-four operator, so the exceptional point acts as a topological defect in the full Hilbert space bundle.

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