Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3

Hyperbolic materials have unique optical properties such as negative refraction and highly directional polaritons, relevant in super-resolution imaging. Here, the topological insulator Bi2Se3 is shown to host hyperbolic edge-confined exciton polaritons that can be steered via engineered edge defects...

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Main Authors: Robin Lingstädt, Nahid Talebi, Mario Hentschel, Soudabeh Mashhadi, Bruno Gompf, Marko Burghard, Harald Giessen, Peter A. van Aken
Format: Article
Language:English
Published: Nature Publishing Group 2021-01-01
Series:Communications Materials
Online Access:https://doi.org/10.1038/s43246-020-00108-9
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spelling doaj-d23021e1df0d4e9c97fa09f976fce95a2021-01-10T12:28:19ZengNature Publishing GroupCommunications Materials2662-44432021-01-012111110.1038/s43246-020-00108-9Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3Robin Lingstädt0Nahid Talebi1Mario Hentschel2Soudabeh Mashhadi3Bruno Gompf4Marko Burghard5Harald Giessen6Peter A. van Aken7Max Planck Institute for Solid State ResearchMax Planck Institute for Solid State Research4th Physics Institute and Research Center SCoPE, University of StuttgartMax Planck Institute for Solid State Research1st Physics Institute, University of StuttgartMax Planck Institute for Solid State Research4th Physics Institute and Research Center SCoPE, University of StuttgartMax Planck Institute for Solid State ResearchHyperbolic materials have unique optical properties such as negative refraction and highly directional polaritons, relevant in super-resolution imaging. Here, the topological insulator Bi2Se3 is shown to host hyperbolic edge-confined exciton polaritons that can be steered via engineered edge defects.https://doi.org/10.1038/s43246-020-00108-9
collection DOAJ
language English
format Article
sources DOAJ
author Robin Lingstädt
Nahid Talebi
Mario Hentschel
Soudabeh Mashhadi
Bruno Gompf
Marko Burghard
Harald Giessen
Peter A. van Aken
spellingShingle Robin Lingstädt
Nahid Talebi
Mario Hentschel
Soudabeh Mashhadi
Bruno Gompf
Marko Burghard
Harald Giessen
Peter A. van Aken
Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3
Communications Materials
author_facet Robin Lingstädt
Nahid Talebi
Mario Hentschel
Soudabeh Mashhadi
Bruno Gompf
Marko Burghard
Harald Giessen
Peter A. van Aken
author_sort Robin Lingstädt
title Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3
title_short Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3
title_full Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3
title_fullStr Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3
title_full_unstemmed Interaction of edge exciton polaritons with engineered defects in the hyperbolic material Bi2Se3
title_sort interaction of edge exciton polaritons with engineered defects in the hyperbolic material bi2se3
publisher Nature Publishing Group
series Communications Materials
issn 2662-4443
publishDate 2021-01-01
description Hyperbolic materials have unique optical properties such as negative refraction and highly directional polaritons, relevant in super-resolution imaging. Here, the topological insulator Bi2Se3 is shown to host hyperbolic edge-confined exciton polaritons that can be steered via engineered edge defects.
url https://doi.org/10.1038/s43246-020-00108-9
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