Reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces

Phonon polaritons in anisotropic van der Waals materials enable subwavelength confinement and controllable flow of light at the nanoscale. Here, the authors exploit correlated perovskite oxide (SmNiO3) substrates with tunable conductivity to obtain real-time modulation and nanoscale reconfiguration...

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Main Authors: Neda Alsadat Aghamiri, Guangwei Hu, Alireza Fali, Zhen Zhang, Jiahan Li, Sivacarendran Balendhran, Sumeet Walia, Sharath Sriram, James H. Edgar, Shriram Ramanathan, Andrea Alù, Yohannes Abate
Format: Article
Language:English
Published: Nature Portfolio 2022-08-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-32287-z
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author Neda Alsadat Aghamiri
Guangwei Hu
Alireza Fali
Zhen Zhang
Jiahan Li
Sivacarendran Balendhran
Sumeet Walia
Sharath Sriram
James H. Edgar
Shriram Ramanathan
Andrea Alù
Yohannes Abate
author_facet Neda Alsadat Aghamiri
Guangwei Hu
Alireza Fali
Zhen Zhang
Jiahan Li
Sivacarendran Balendhran
Sumeet Walia
Sharath Sriram
James H. Edgar
Shriram Ramanathan
Andrea Alù
Yohannes Abate
author_sort Neda Alsadat Aghamiri
collection DOAJ
description Phonon polaritons in anisotropic van der Waals materials enable subwavelength confinement and controllable flow of light at the nanoscale. Here, the authors exploit correlated perovskite oxide (SmNiO3) substrates with tunable conductivity to obtain real-time modulation and nanoscale reconfiguration of hyperbolic polaritons in hBN and α-MoO3 crystals.
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spelling doaj.art-32f9d2881e19447db9456baf9bcf724b2022-12-22T04:01:48ZengNature PortfolioNature Communications2041-17232022-08-011311910.1038/s41467-022-32287-zReconfigurable hyperbolic polaritonics with correlated oxide metasurfacesNeda Alsadat Aghamiri0Guangwei Hu1Alireza Fali2Zhen Zhang3Jiahan Li4Sivacarendran Balendhran5Sumeet Walia6Sharath Sriram7James H. Edgar8Shriram Ramanathan9Andrea Alù10Yohannes Abate11Department of Physics and Astronomy, University of GeorgiaPhotonics Initiative, Advanced Science Research Center, City University of New YorkDepartment of Physics and Astronomy, University of GeorgiaSchool of Materials Engineering, Purdue UniversityTim Taylor Department of Chemical Engineering, Kansas State UniversitySchool of Physics, University of MelbourneSchool of Engineering RMIT University MelbourneFunctional Materials and Microsystems Research Group and the Micro Nano Research Facility RMIT UniversityTim Taylor Department of Chemical Engineering, Kansas State UniversitySchool of Materials Engineering, Purdue UniversityPhotonics Initiative, Advanced Science Research Center, City University of New YorkDepartment of Physics and Astronomy, University of GeorgiaPhonon polaritons in anisotropic van der Waals materials enable subwavelength confinement and controllable flow of light at the nanoscale. Here, the authors exploit correlated perovskite oxide (SmNiO3) substrates with tunable conductivity to obtain real-time modulation and nanoscale reconfiguration of hyperbolic polaritons in hBN and α-MoO3 crystals.https://doi.org/10.1038/s41467-022-32287-z
spellingShingle Neda Alsadat Aghamiri
Guangwei Hu
Alireza Fali
Zhen Zhang
Jiahan Li
Sivacarendran Balendhran
Sumeet Walia
Sharath Sriram
James H. Edgar
Shriram Ramanathan
Andrea Alù
Yohannes Abate
Reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces
Nature Communications
title Reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces
title_full Reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces
title_fullStr Reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces
title_full_unstemmed Reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces
title_short Reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces
title_sort reconfigurable hyperbolic polaritonics with correlated oxide metasurfaces
url https://doi.org/10.1038/s41467-022-32287-z
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