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Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space

The search for materials with flat electronic bands continues due to their potential to drive strong correlation and symmetry breaking orders. Electronic moirés formed in van der Waals heterostructures have proved to be an ideal platform. However, there is no holistic experimental picture for how su...

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Autores principales: Stansbury, Conrad H., Utama, M. Iqbal Bakti, Fatuzzo, Claudia G., Regan, Emma C., Wang, Danqing, Xiang, Ziyu, Ding, Mingchao, Watanabe, Kenji, Taniguchi, Takashi, Blei, Mark, Shen, Yuxia, Lorcy, Stéphane, Bostwick, Aaron, Jozwiak, Chris, Koch, Roland, Tongay, Sefaattin, Avila, José, Rotenberg, Eli, Wang, Feng, Lanzara, Alessandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8442863/
https://www.ncbi.nlm.nih.gov/pubmed/34516763
http://dx.doi.org/10.1126/sciadv.abf4387
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author Stansbury, Conrad H.
Utama, M. Iqbal Bakti
Fatuzzo, Claudia G.
Regan, Emma C.
Wang, Danqing
Xiang, Ziyu
Ding, Mingchao
Watanabe, Kenji
Taniguchi, Takashi
Blei, Mark
Shen, Yuxia
Lorcy, Stéphane
Bostwick, Aaron
Jozwiak, Chris
Koch, Roland
Tongay, Sefaattin
Avila, José
Rotenberg, Eli
Wang, Feng
Lanzara, Alessandra
author_facet Stansbury, Conrad H.
Utama, M. Iqbal Bakti
Fatuzzo, Claudia G.
Regan, Emma C.
Wang, Danqing
Xiang, Ziyu
Ding, Mingchao
Watanabe, Kenji
Taniguchi, Takashi
Blei, Mark
Shen, Yuxia
Lorcy, Stéphane
Bostwick, Aaron
Jozwiak, Chris
Koch, Roland
Tongay, Sefaattin
Avila, José
Rotenberg, Eli
Wang, Feng
Lanzara, Alessandra
author_sort Stansbury, Conrad H.
collection PubMed
description The search for materials with flat electronic bands continues due to their potential to drive strong correlation and symmetry breaking orders. Electronic moirés formed in van der Waals heterostructures have proved to be an ideal platform. However, there is no holistic experimental picture for how superlattices modify electronic structure. By combining spatially resolved angle-resolved photoemission spectroscopy with optical spectroscopy, we report the first direct evidence of how strongly correlated phases evolve from a weakly interacting regime in a transition metal dichalcogenide superlattice. By comparing short and long wave vector moirés, we find that the electronic structure evolves into a highly localized regime with increasingly flat bands and renormalized effective mass. The flattening is accompanied by the opening of a large gap in the spectral function and splitting of the exciton peaks. These results advance our understanding of emerging phases in moiré superlattices and point to the importance of interlayer physics.
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spelling pubmed-84428632021-09-24 Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space Stansbury, Conrad H. Utama, M. Iqbal Bakti Fatuzzo, Claudia G. Regan, Emma C. Wang, Danqing Xiang, Ziyu Ding, Mingchao Watanabe, Kenji Taniguchi, Takashi Blei, Mark Shen, Yuxia Lorcy, Stéphane Bostwick, Aaron Jozwiak, Chris Koch, Roland Tongay, Sefaattin Avila, José Rotenberg, Eli Wang, Feng Lanzara, Alessandra Sci Adv Physical and Materials Sciences The search for materials with flat electronic bands continues due to their potential to drive strong correlation and symmetry breaking orders. Electronic moirés formed in van der Waals heterostructures have proved to be an ideal platform. However, there is no holistic experimental picture for how superlattices modify electronic structure. By combining spatially resolved angle-resolved photoemission spectroscopy with optical spectroscopy, we report the first direct evidence of how strongly correlated phases evolve from a weakly interacting regime in a transition metal dichalcogenide superlattice. By comparing short and long wave vector moirés, we find that the electronic structure evolves into a highly localized regime with increasingly flat bands and renormalized effective mass. The flattening is accompanied by the opening of a large gap in the spectral function and splitting of the exciton peaks. These results advance our understanding of emerging phases in moiré superlattices and point to the importance of interlayer physics. American Association for the Advancement of Science 2021-09-10 /pmc/articles/PMC8442863/ /pubmed/34516763 http://dx.doi.org/10.1126/sciadv.abf4387 Text en Copyright © 2021 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Physical and Materials Sciences
Stansbury, Conrad H.
Utama, M. Iqbal Bakti
Fatuzzo, Claudia G.
Regan, Emma C.
Wang, Danqing
Xiang, Ziyu
Ding, Mingchao
Watanabe, Kenji
Taniguchi, Takashi
Blei, Mark
Shen, Yuxia
Lorcy, Stéphane
Bostwick, Aaron
Jozwiak, Chris
Koch, Roland
Tongay, Sefaattin
Avila, José
Rotenberg, Eli
Wang, Feng
Lanzara, Alessandra
Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space
title Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space
title_full Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space
title_fullStr Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space
title_full_unstemmed Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space
title_short Visualizing electron localization of WS(2)/WSe(2) moiré superlattices in momentum space
title_sort visualizing electron localization of ws(2)/wse(2) moiré superlattices in momentum space
topic Physical and Materials Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8442863/
https://www.ncbi.nlm.nih.gov/pubmed/34516763
http://dx.doi.org/10.1126/sciadv.abf4387
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