Presentation
4 October 2023 Anomalous free-form optical ring resonators enabled by non-uniform synthetic gauge fields
Yuma Kawaguchi, Daria Smirnova, Filipp Komissarenko, Svetlana Kiriushechkina, Anton Vakulenko, Andrea Alù, Alexander Khanikaev
Author Affiliations +
Abstract
Geometrical phases such as Pancharatnam and Berry phase, have been playing important role in classical wave and quantum physics. In topological photonics, the geometrical phases can be controlled with artificial gauge fields by designing lattice geometry of photonic crystals. Here, we theoretically and experimentally demonstrate that geometric phases can give rise to a new class of resonant states in topological ring resonators. Our simulations and analytical model reveal a hierarchy of the resonant modes and transformation of polarization states. Also, we provide experimental observations of the resonant states by infrared spectroscopy.
Conference Presentation
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yuma Kawaguchi, Daria Smirnova, Filipp Komissarenko, Svetlana Kiriushechkina, Anton Vakulenko, Andrea Alù, and Alexander Khanikaev "Anomalous free-form optical ring resonators enabled by non-uniform synthetic gauge fields", Proc. SPIE PC12646, Metamaterials, Metadevices, and Metasystems 2023, PC126461E (4 October 2023); https://doi.org/10.1117/12.2677142
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KEYWORDS
Resonators

Optical resonators

Quantum fields

Quantum optical ring resonators

Polarization

Finite element methods

Interfaces

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