Acoustic cavities in 2D heterostructures

Here, authors report on acoustic cavities in 2D materials operating in the 50–600 GHz range and show that quality factors approach the limit set by lattice anharmonicity. Functionality expanded by heterogeneities (steps and interfaces) is demonstrated through coupled cavities and frequency comb gene...

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Main Authors: Maxim K. Zalalutdinov, Jeremy T. Robinson, Jose J. Fonseca, Samuel W. LaGasse, Tribhuwan Pandey, Lucas R. Lindsay, Thomas L. Reinecke, Douglas M. Photiadis, James C. Culbertson, Cory D. Cress, Brian H. Houston
Format: Article
Language:English
Published: Nature Publishing Group 2021-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-23359-7
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spelling doaj-c6972b1784ec4be59e5ead86c5f2e4042021-06-06T11:13:51ZengNature Publishing GroupNature Communications2041-17232021-06-0112111110.1038/s41467-021-23359-7Acoustic cavities in 2D heterostructuresMaxim K. Zalalutdinov0Jeremy T. Robinson1Jose J. Fonseca2Samuel W. LaGasse3Tribhuwan Pandey4Lucas R. Lindsay5Thomas L. Reinecke6Douglas M. Photiadis7James C. Culbertson8Cory D. Cress9Brian H. Houston10US Naval Research LaboratoryUS Naval Research LaboratoryNRC Postdoctoral Fellow at Naval Research LaboratoryNRC Postdoctoral Fellow at Naval Research LaboratoryDepartment of Physics, University of AntwerpMaterials Science and Technology Division, Oak Ridge National LaboratoryUS Naval Research LaboratoryUS Naval Research LaboratoryUS Naval Research LaboratoryUS Naval Research LaboratoryUS Naval Research LaboratoryHere, authors report on acoustic cavities in 2D materials operating in the 50–600 GHz range and show that quality factors approach the limit set by lattice anharmonicity. Functionality expanded by heterogeneities (steps and interfaces) is demonstrated through coupled cavities and frequency comb generation.https://doi.org/10.1038/s41467-021-23359-7
collection DOAJ
language English
format Article
sources DOAJ
author Maxim K. Zalalutdinov
Jeremy T. Robinson
Jose J. Fonseca
Samuel W. LaGasse
Tribhuwan Pandey
Lucas R. Lindsay
Thomas L. Reinecke
Douglas M. Photiadis
James C. Culbertson
Cory D. Cress
Brian H. Houston
spellingShingle Maxim K. Zalalutdinov
Jeremy T. Robinson
Jose J. Fonseca
Samuel W. LaGasse
Tribhuwan Pandey
Lucas R. Lindsay
Thomas L. Reinecke
Douglas M. Photiadis
James C. Culbertson
Cory D. Cress
Brian H. Houston
Acoustic cavities in 2D heterostructures
Nature Communications
author_facet Maxim K. Zalalutdinov
Jeremy T. Robinson
Jose J. Fonseca
Samuel W. LaGasse
Tribhuwan Pandey
Lucas R. Lindsay
Thomas L. Reinecke
Douglas M. Photiadis
James C. Culbertson
Cory D. Cress
Brian H. Houston
author_sort Maxim K. Zalalutdinov
title Acoustic cavities in 2D heterostructures
title_short Acoustic cavities in 2D heterostructures
title_full Acoustic cavities in 2D heterostructures
title_fullStr Acoustic cavities in 2D heterostructures
title_full_unstemmed Acoustic cavities in 2D heterostructures
title_sort acoustic cavities in 2d heterostructures
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2021-06-01
description Here, authors report on acoustic cavities in 2D materials operating in the 50–600 GHz range and show that quality factors approach the limit set by lattice anharmonicity. Functionality expanded by heterogeneities (steps and interfaces) is demonstrated through coupled cavities and frequency comb generation.
url https://doi.org/10.1038/s41467-021-23359-7
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