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Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface

Electrically tunable hyperbolic polaritons in two dimensional (2D) materials can offer unexplored opportunities in integrating photonics and nano-optoelectronics into a single chip. Here, we suggest that monolayer NaW(2)O(2)Br(6) can host electrically tunable hyperbolic plasmon polaritons for infrar...

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Detalles Bibliográficos
Autores principales: Huang, Enhui, Xiang, Hui, Jiao, Han, Zhou, Xia, Du, Jinli, Zhong, Wenying, Xu, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417524/
https://www.ncbi.nlm.nih.gov/pubmed/36132814
http://dx.doi.org/10.1039/d2na00292b
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author Huang, Enhui
Xiang, Hui
Jiao, Han
Zhou, Xia
Du, Jinli
Zhong, Wenying
Xu, Bo
author_facet Huang, Enhui
Xiang, Hui
Jiao, Han
Zhou, Xia
Du, Jinli
Zhong, Wenying
Xu, Bo
author_sort Huang, Enhui
collection PubMed
description Electrically tunable hyperbolic polaritons in two dimensional (2D) materials can offer unexplored opportunities in integrating photonics and nano-optoelectronics into a single chip. Here, we suggest that monolayer NaW(2)O(2)Br(6) can host electrically tunable hyperbolic plasmon polaritons for infrared light via first-principles calculations. 2D monolayer NaW(2)O(2)Br(6) exhibits an extremely anisotropic metallic property: conducting for one direction but almost insulating for the other direction, which could be considered as a 2D analogue of metal/dielectric multilayers, a typical structure for hyperbolic metamaterials. More interestingly, we also demonstrate that the hyperbolic properties in the near-infrared range, including the hyperbolic windows, figure of merit, and propagation directions of plasmon beams, can be effectively modulated by carrier doping at the order of 10(13) cm(−2), which even can be accessed by solid-gated field effect transistors. Thus, it is anticipated that monolayer NaW(2)O(2)Br(6) has a great potential in constructing field programmable polariton nanodevices for emerging and diverse photonic applications.
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spelling pubmed-94175242022-09-20 Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface Huang, Enhui Xiang, Hui Jiao, Han Zhou, Xia Du, Jinli Zhong, Wenying Xu, Bo Nanoscale Adv Chemistry Electrically tunable hyperbolic polaritons in two dimensional (2D) materials can offer unexplored opportunities in integrating photonics and nano-optoelectronics into a single chip. Here, we suggest that monolayer NaW(2)O(2)Br(6) can host electrically tunable hyperbolic plasmon polaritons for infrared light via first-principles calculations. 2D monolayer NaW(2)O(2)Br(6) exhibits an extremely anisotropic metallic property: conducting for one direction but almost insulating for the other direction, which could be considered as a 2D analogue of metal/dielectric multilayers, a typical structure for hyperbolic metamaterials. More interestingly, we also demonstrate that the hyperbolic properties in the near-infrared range, including the hyperbolic windows, figure of merit, and propagation directions of plasmon beams, can be effectively modulated by carrier doping at the order of 10(13) cm(−2), which even can be accessed by solid-gated field effect transistors. Thus, it is anticipated that monolayer NaW(2)O(2)Br(6) has a great potential in constructing field programmable polariton nanodevices for emerging and diverse photonic applications. RSC 2022-07-05 /pmc/articles/PMC9417524/ /pubmed/36132814 http://dx.doi.org/10.1039/d2na00292b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Huang, Enhui
Xiang, Hui
Jiao, Han
Zhou, Xia
Du, Jinli
Zhong, Wenying
Xu, Bo
Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface
title Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface
title_full Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface
title_fullStr Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface
title_full_unstemmed Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface
title_short Monolayer NaW(2)O(2)Br(6): a gate tunable near-infrared hyperbolic plasmonic surface
title_sort monolayer naw(2)o(2)br(6): a gate tunable near-infrared hyperbolic plasmonic surface
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417524/
https://www.ncbi.nlm.nih.gov/pubmed/36132814
http://dx.doi.org/10.1039/d2na00292b
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