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Direct observation of valley-polarized topological edge states in designer surface plasmon crystals
by
Wen, Weijia
, Huang, Yingzhou
, Wu, Xiaoxiao
, Han, Dezhuan
, Xiang, Hong
, Meng, Yan
, Tian, Jingxuan
in
639/624/399/1015
/ 639/766/1130/2799
/ 639/766/119/2792
/ 639/925/927/1021
/ Crystals
/ Domain walls
/ Fourier transforms
/ Humanities and Social Sciences
/ Layered materials
/ multidisciplinary
/ Photonic crystals
/ Science
/ Science (multidisciplinary)
/ Topological insulators
/ Valleys
2017
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Direct observation of valley-polarized topological edge states in designer surface plasmon crystals
by
Wen, Weijia
, Huang, Yingzhou
, Wu, Xiaoxiao
, Han, Dezhuan
, Xiang, Hong
, Meng, Yan
, Tian, Jingxuan
in
639/624/399/1015
/ 639/766/1130/2799
/ 639/766/119/2792
/ 639/925/927/1021
/ Crystals
/ Domain walls
/ Fourier transforms
/ Humanities and Social Sciences
/ Layered materials
/ multidisciplinary
/ Photonic crystals
/ Science
/ Science (multidisciplinary)
/ Topological insulators
/ Valleys
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Direct observation of valley-polarized topological edge states in designer surface plasmon crystals
by
Wen, Weijia
, Huang, Yingzhou
, Wu, Xiaoxiao
, Han, Dezhuan
, Xiang, Hong
, Meng, Yan
, Tian, Jingxuan
in
639/624/399/1015
/ 639/766/1130/2799
/ 639/766/119/2792
/ 639/925/927/1021
/ Crystals
/ Domain walls
/ Fourier transforms
/ Humanities and Social Sciences
/ Layered materials
/ multidisciplinary
/ Photonic crystals
/ Science
/ Science (multidisciplinary)
/ Topological insulators
/ Valleys
2017
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Direct observation of valley-polarized topological edge states in designer surface plasmon crystals
Journal Article
Direct observation of valley-polarized topological edge states in designer surface plasmon crystals
2017
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Overview
The extensive research of two-dimensional layered materials has revealed that valleys, as energy extrema in momentum space, could offer a new degree of freedom for carrying information. Based on this concept, researchers have predicted valley-Hall topological insulators that could support valley-polarized edge states at non-trivial domain walls. Recently, several kinds of photonic and sonic crystals have been proposed as classical counterparts of valley-Hall topological insulators. However, direct experimental observation of valley-polarized edge states in photonic crystals has remained difficult until now. Here, we demonstrate a designer surface plasmon crystal comprising metallic patterns deposited on a dielectric substrate, which can become a valley-Hall photonic topological insulator by exploiting the mirror-symmetry-breaking mechanism. Topological edge states with valley-dependent transport are directly visualized in the microwave regime. The observed edge states are confirmed to be fully valley-polarized through spatial Fourier transforms. Topological protection of the edge states at sharp corners is also experimentally demonstrated.
The photonic valley-Hall effect can enable the unidirectional propagation of edge states, but often require covers which shield the states from direct measurement. Here, Wu et al. realize photonic valley-Hall effect using designer surface plasmons, enabling the direct observation of topological states.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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