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Adiabatic topological photonic interfaces
PhysicsNature Communications

Adiabatic topological photonic interfaces

A. Vakulenko, S. Kiriushechkina, et al.

Discover the groundbreaking research by Anton Vakulenko, Svetlana Kiriushechkina, Daria Smirnova, and colleagues, as they unveil adiabatic topological photonic interfaces that enhance light control in photonics. Their experimental findings demonstrate the power of slowly varying synthetic gauge fields in improving spin-Hall and valley-Hall topological structures, offering exciting advancements in optical technologies.... show more
Abstract
Topological phases of matter have been attracting significant attention across diverse fields, from inherently quantum systems to classical photonic and acoustic metamaterials. In photonics, topological phases offer resilience and bring novel opportunities to control light with pseudo-spins. However, topological photonic systems can suffer from limitations, such as breakdown of topological properties due to their symmetry-protected origin and radiative leakage. Here we introduce adiabatic topological photonic interfaces, which help to overcome these issues. We predict and experimentally confirm that topological metasurfaces with slowly varying synthetic gauge fields significantly improve the guiding features of spin-Hall and valley-Hall topological structures commonly used in the design of topological photonic devices. Adiabatic variation in the domain wall profiles leads to the delocalization of topological boundary modes, making them less sensitive to details of the lattice, perceiving the structure as an effectively homogeneous Dirac metasurface. As a result, the modes showcase improved bandgap crossing, longer radiative lifetimes and propagation distances.
Publisher
Nature Communications
Published On
Aug 02, 2023
Authors
Anton Vakulenko, Svetlana Kiriushechkina, Daria Smirnova, Sriram Guddala, Filipp Komissarenko, Andrea Alù, Monica Allen, Jeffery Allen, Alexander B. Khanikaev
Tags
topological phasesphotonic interfacesadiabatic variationgauge fieldsspin-Hallvalley-Hallmetasurfaces
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