Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers

At the few or monolayer limit, layered materials define an interesting two-dimensional system with unique electronic and phonon properties. The electron band structure of monolayers can be drastically different from multilayers despite the weak van der Waals interaction between neighboring layers. I...

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Main Authors: Fan, Wen, Zhu, Xi, Ke, Feng, Chen, Yabin, Dong, Kaichen, Ji, Jie, Chen, Bin, Tongay, Sefaattin, Ager, Joel W., Liu, Kai, Su, Haibin, Wu, Junqiao
Other Authors: School of Materials Science & Engineering
Format: Article
Language:English
Published: 2016
Online Access:https://hdl.handle.net/10356/81908
http://hdl.handle.net/10220/39695
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-819082023-07-14T15:50:07Z Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers Fan, Wen Zhu, Xi Ke, Feng Chen, Yabin Dong, Kaichen Ji, Jie Chen, Bin Tongay, Sefaattin Ager, Joel W. Liu, Kai Su, Haibin Wu, Junqiao School of Materials Science & Engineering At the few or monolayer limit, layered materials define an interesting two-dimensional system with unique electronic and phonon properties. The electron band structure of monolayers can be drastically different from multilayers despite the weak van der Waals interaction between neighboring layers. In this Rapid Communication, we demonstrate that vibrational spectra of a MoS2 monolayer and a WS2 monolayer are also renormalized when the interaction between them is artificially modulated. This is achieved by using a diamond-anvil cell to apply high pressures, up to 39 GPa onto WS2/MoS2 heterobilayers. With increasing pressure, the out-of-plane Raman frequencies of the two individual monolayers repel each other, exhibiting coherent vibrations across the van der Waals gap with an optical-like and an acousticlike interlayer vibration mode. The discovery shows a crossover in lattice vibration from a two-dimensional system toward a three-dimensional system driven by enforced interlayer coupling. Published version 2016-01-13T07:44:42Z 2019-12-06T14:42:50Z 2016-01-13T07:44:42Z 2019-12-06T14:42:50Z 2015 Journal Article Fan, W., Zhu, X., Ke, F., Chen, Y., Dong, K., Ji, J., et al. (2015). Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers. Physical Review B, 92, 241408-. 1098-0121 https://hdl.handle.net/10356/81908 http://hdl.handle.net/10220/39695 10.1103/PhysRevB.92.241408 en Physical Review B © 2015 American Physical Society. This paper was published in Physical Review B and is made available as an electronic reprint (preprint) with permission of American Physical Society. The published version is available at: [http://dx.doi.org/10.1103/PhysRevB.92.241408]. One print or electronic copy may be made for personal use only. Systematic or multiple reproduction, distribution to multiple locations via electronic or other means, duplication of any material in this paper for a fee or for commercial purposes, or modification of the content of the paper is prohibited and is subject to penalties under law. 5 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
description At the few or monolayer limit, layered materials define an interesting two-dimensional system with unique electronic and phonon properties. The electron band structure of monolayers can be drastically different from multilayers despite the weak van der Waals interaction between neighboring layers. In this Rapid Communication, we demonstrate that vibrational spectra of a MoS2 monolayer and a WS2 monolayer are also renormalized when the interaction between them is artificially modulated. This is achieved by using a diamond-anvil cell to apply high pressures, up to 39 GPa onto WS2/MoS2 heterobilayers. With increasing pressure, the out-of-plane Raman frequencies of the two individual monolayers repel each other, exhibiting coherent vibrations across the van der Waals gap with an optical-like and an acousticlike interlayer vibration mode. The discovery shows a crossover in lattice vibration from a two-dimensional system toward a three-dimensional system driven by enforced interlayer coupling.
author2 School of Materials Science & Engineering
author_facet School of Materials Science & Engineering
Fan, Wen
Zhu, Xi
Ke, Feng
Chen, Yabin
Dong, Kaichen
Ji, Jie
Chen, Bin
Tongay, Sefaattin
Ager, Joel W.
Liu, Kai
Su, Haibin
Wu, Junqiao
format Article
author Fan, Wen
Zhu, Xi
Ke, Feng
Chen, Yabin
Dong, Kaichen
Ji, Jie
Chen, Bin
Tongay, Sefaattin
Ager, Joel W.
Liu, Kai
Su, Haibin
Wu, Junqiao
spellingShingle Fan, Wen
Zhu, Xi
Ke, Feng
Chen, Yabin
Dong, Kaichen
Ji, Jie
Chen, Bin
Tongay, Sefaattin
Ager, Joel W.
Liu, Kai
Su, Haibin
Wu, Junqiao
Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers
author_sort Fan, Wen
title Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers
title_short Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers
title_full Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers
title_fullStr Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers
title_full_unstemmed Vibrational spectrum renormalization by enforced coupling across the van der Waals gap between MoS2 and WS2 monolayers
title_sort vibrational spectrum renormalization by enforced coupling across the van der waals gap between mos2 and ws2 monolayers
publishDate 2016
url https://hdl.handle.net/10356/81908
http://hdl.handle.net/10220/39695
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