Emerging many-body effects in semiconductor artificial graphene with low disorder

Artificial nanostructures designed to simulate models of materials such as graphene provide insights into the material physics but can also have practical advantages. Du et al. create low-disorder artificial graphene devices, and present evidence of terahertz spin-exciton modes and large Coulomb int...

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Autores principales: Lingjie Du, Sheng Wang, Diego Scarabelli, Loren N. Pfeiffer, Ken W. West, Saeed Fallahi, Geoff C. Gardner, Michael J. Manfra, Vittorio Pellegrini, Shalom J. Wind, Aron Pinczuk
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/271ad010b2524caf89292c332625dd2c
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spelling oai:doaj.org-article:271ad010b2524caf89292c332625dd2c2021-12-02T17:32:00ZEmerging many-body effects in semiconductor artificial graphene with low disorder10.1038/s41467-018-05775-42041-1723https://doaj.org/article/271ad010b2524caf89292c332625dd2c2018-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05775-4https://doaj.org/toc/2041-1723Artificial nanostructures designed to simulate models of materials such as graphene provide insights into the material physics but can also have practical advantages. Du et al. create low-disorder artificial graphene devices, and present evidence of terahertz spin-exciton modes and large Coulomb interactions.Lingjie DuSheng WangDiego ScarabelliLoren N. PfeifferKen W. WestSaeed FallahiGeoff C. GardnerMichael J. ManfraVittorio PellegriniShalom J. WindAron PinczukNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lingjie Du
Sheng Wang
Diego Scarabelli
Loren N. Pfeiffer
Ken W. West
Saeed Fallahi
Geoff C. Gardner
Michael J. Manfra
Vittorio Pellegrini
Shalom J. Wind
Aron Pinczuk
Emerging many-body effects in semiconductor artificial graphene with low disorder
description Artificial nanostructures designed to simulate models of materials such as graphene provide insights into the material physics but can also have practical advantages. Du et al. create low-disorder artificial graphene devices, and present evidence of terahertz spin-exciton modes and large Coulomb interactions.
format article
author Lingjie Du
Sheng Wang
Diego Scarabelli
Loren N. Pfeiffer
Ken W. West
Saeed Fallahi
Geoff C. Gardner
Michael J. Manfra
Vittorio Pellegrini
Shalom J. Wind
Aron Pinczuk
author_facet Lingjie Du
Sheng Wang
Diego Scarabelli
Loren N. Pfeiffer
Ken W. West
Saeed Fallahi
Geoff C. Gardner
Michael J. Manfra
Vittorio Pellegrini
Shalom J. Wind
Aron Pinczuk
author_sort Lingjie Du
title Emerging many-body effects in semiconductor artificial graphene with low disorder
title_short Emerging many-body effects in semiconductor artificial graphene with low disorder
title_full Emerging many-body effects in semiconductor artificial graphene with low disorder
title_fullStr Emerging many-body effects in semiconductor artificial graphene with low disorder
title_full_unstemmed Emerging many-body effects in semiconductor artificial graphene with low disorder
title_sort emerging many-body effects in semiconductor artificial graphene with low disorder
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/271ad010b2524caf89292c332625dd2c
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AT shengwang emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT diegoscarabelli emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT lorennpfeiffer emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT kenwwest emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT saeedfallahi emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT geoffcgardner emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT michaeljmanfra emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT vittoriopellegrini emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT shalomjwind emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
AT aronpinczuk emergingmanybodyeffectsinsemiconductorartificialgraphenewithlowdisorder
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