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Chiral transport in Compact topological waveguide arrays

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arxiv 2406.02843 v1 pith:2VVT2Q5D submitted 2024-06-05 physics.optics

Chiral transport in Compact topological waveguide arrays

classification physics.optics
keywords topologicalchiralopticalwaveguidearraystransportadiabaticcomputing
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Waveguide arrays have a wide range of applications, including optical communication, topological systems, and quantum computing. Chiral transport has broad prospects in optical computing, optical switching, optical isolation, and polarization control. However, the lengths of chiral transmission devices in waveguide arrays are typically very long due to adiabatic limit. We introduce topological protection in encircling exceptional points systems, enabling the larger gap size between the bulk states and topological edge states (TESs). Thus, the restriction from adiabatic limit on the rapid evolution of TESs is eased, thereby significantly reducing the device size. We experimentally demonstrate that the chiral transport has been achieved in a topological waveguide array that is only 75 {\mu}m long. Our research fuses the topology with non-Hermitian physics to develop highly-integrated photonic chips for further advance of nano-photonics.

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