Non-Hermitian topological light steering
ORAL
Abstract
Photonic topological insulators provide a route for disorder-immune light transport, which holds promise for practical applications. Flexible reconfiguration of topological light pathways can enable high-density photonics routing, thus sustaining the growing demand for data capacity. By strategically interfacing non-Hermitian and topological physics, we demonstrate arbitrary, robust light steering in reconfigurable non-Hermitian junctions, in which chiral topological states can propagate at an interface of the gain and loss domains. Our non-Hermitian–controlled topological state can enable the dynamic control of robust transmission links of light inside the bulk, fully using the entire footprint of a photonic topological insulator.
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Presenters
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Tianwei Wu
University of Pennsylvania
Authors
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Han Zhao
University of Pennsylvania
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Xingdu Qiao
University of Pennsylvania
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Tianwei Wu
University of Pennsylvania
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Bikashkali Midya
University of Pennsylvania
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Stefano Longhi
Dipartimento di Fisica, Politecnico di Milano, Physics, Politecnico di Milano
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Liang Feng
University of Pennsylvania