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Topological valley-locked waveguides with C4 impurity

Zhang Hongxiang et al · Wiley · 2024

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3-D near-field imaging of guided modes in nanophotonic waveguides

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Heterostructures play a pivotal role in the design of valley-locked waveguides, facilitating the manipulation of width as an additional degree of freedom. Through this design, we demonstrate the extension of the topological guided modes from the domain wall of topologically nontrivial valley photonic crystals (VPCs) into the trivial VPCs. We propose a C4 impurity to control the states of the light wave transmission in topological valley-locked waveguides through the intervalley scattering of defects in Quantum Valley Spin Hall topological insulators. By rotating the C4 structure, the ON/OFF (0°/45°) state of the valley-locked waveguides can be controlled, effectively serving as a switch component. Furthermore, many unique applications could be devised based on the introduced impurity. Examples include the development of coding channels with arbitrary output ports and energy concentrators with enhanced secondary concentration. The proposed topological valley-locked waveguides with C4 impurity will be beneficial for on-chip integrated photonic networks.

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APA 7

al, Z. H. E. (2024). Topological valley-locked waveguides with C4 impurity. https://doi.org/10.1515/nanoph-2024-0192

MLA

al, Zhang Hongxiang et. "Topological valley-locked waveguides with C4 impurity." 2024. https://doi.org/10.1515/nanoph-2024-0192.

Chicago

al, Zhang Hongxiang et. 2024. "Topological valley-locked waveguides with C4 impurity.". https://doi.org/10.1515/nanoph-2024-0192.

Harvard

al, Z. H. E. 2024, Topological valley-locked waveguides with C4 impurity, Wiley, available at: https://doi.org/10.1515/nanoph-2024-0192 [Accessed 10 Aug. 2026].

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Title
Topological valley-locked waveguides with C4 impurity
Author / contributors
Zhang Hongxiang et al
Publisher
Wiley
Publication year
2024
ISSN
2192-8614
ISSN
2192-8614
Language
English

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