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dc.contributor.authorAsaba, Tomoyaen
dc.contributor.authorPeng, Langen
dc.contributor.authorOno, Takahiroen
dc.contributor.authorAkutagawa, Satoruen
dc.contributor.authorTanaka, Ibukien
dc.contributor.authorMurayama, Hinakoen
dc.contributor.authorSuetsugu, Shotaen
dc.contributor.authorRazpopov, Aleksandarde
dc.contributor.authorKasahara, Yuichien
dc.contributor.authorTerashima, Takahitoen
dc.contributor.authorKohsaka, Yuhkien
dc.contributor.authorShibauchi, Takasadaen
dc.contributor.authorIchikawa, Masatoshien
dc.contributor.authorValentí, Roserde
dc.contributor.authorSasa, Shin-ichien
dc.contributor.authorMatsuda, Yujien
dc.contributor.alternative浅場, 智也ja
dc.contributor.alternative彭, 浪ja
dc.contributor.alternative小野, 孝浩ja
dc.contributor.alternative芥川, 聖ja
dc.contributor.alternative田中, 伊蕗ja
dc.contributor.alternative村山, 陽奈子ja
dc.contributor.alternative末次, 祥大ja
dc.contributor.alternative笠原, 裕一ja
dc.contributor.alternative寺嶋, 孝仁ja
dc.contributor.alternative幸坂, 祐生ja
dc.contributor.alternative芝内, 孝禎ja
dc.contributor.alternative市川, 正敏ja
dc.contributor.alternative佐々, 真一ja
dc.contributor.alternative松田, 祐司ja
dc.date.accessioned2023-05-09T09:13:00Z-
dc.date.available2023-05-09T09:13:00Z-
dc.date.issued2023-05-
dc.identifier.urihttp://hdl.handle.net/2433/282022-
dc.description1ナノメートル半導体量子細線の作製に成功 --量子の熱帯魚パターンが拓く未来のナノテク--. 京都大学プレスリリース. 2023-05-08.ja
dc.description.abstractContinued advances in quantum technologies rely on producing nanometer-scale wires. Although several state-of-the-art nanolithographic technologies and bottom-up synthesis processes have been used to engineer these wires, critical challenges remain in growing uniform atomic-scale crystalline wires and constructing their network structures. Here, we discover a simple method to fabricate atomic-scale wires with various arrangements, including stripes, X-junctions, Y-junctions, and nanorings. Single-crystalline atomic-scale wires of a Mott insulator, whose bandgap is comparable to those of wide-gap semiconductors, are spontaneously grown on graphite substrates by pulsed-laser deposition. These wires are one unit cell thick and have an exact width of two and four unit cells (1.4 and 2.8 nm) and lengths up to a few micrometers. We show that the nonequilibrium reaction-diffusion processes may play an essential role in atomic pattern formation. Our findings offer a previously unknown perspective on the nonequilibrium self-organization phenomena on an atomic scale, paving a unique way for the quantum architecture of nano-network.en
dc.language.isoeng-
dc.publisherAmerican Association for the Advancement of Science (AAAS)en
dc.rightsCopyright © 2023 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 License 4.0 (CC BY).en
dc.rightsThis is an open-access article distributed under the terms of the Creative Commons Attribution license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.en
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/-
dc.titleGrowth of self-integrated atomic quantum wires and junctions of a Mott semiconductoren
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.jtitleScience Advancesen
dc.identifier.volume9-
dc.identifier.issue18-
dc.relation.doi10.1126/sciadv.abq5561-
dc.textversionpublisher-
dc.identifier.artnumeabq5561-
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto University; RIKEN Center for Emergent Matter Scienceen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressInstitut für Theoretische Physik, Goethe-Universitätde
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Advanced Materials Science, University of Tokyoen
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressInstitut für Theoretische Physik, Goethe-Universitätde
dc.addressDepartment of Physics, Kyoto Universityen
dc.addressDepartment of Physics, Kyoto Universityen
dc.identifier.pmid37134174-
dc.relation.urlhttps://www.kyoto-u.ac.jp/ja/research-news/2023-05-08-
dcterms.accessRightsopen access-
datacite.awardNumber18H05227-
datacite.awardNumber18H03680-
datacite.awardNumber18H01180-
datacite.awardNumber21K13881-
datacite.awardNumber19H05824-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-18H05227/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-18H03680/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-18H01180/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-21K13881/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PLANNED-19H05824/-
dc.identifier.eissn2375-2548-
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.awardTitle強相関量子凝縮相における回転対称性の破れの検証ja
jpcoar.awardTitle量子スピン液体における創発準粒子の解明ja
jpcoar.awardTitle近藤絶縁体における中性フェルミオン励起の観測ja
jpcoar.awardTitle量子スピン液体におけるトポロジカル秩序相の解明と制御ja
jpcoar.awardTitle量子液晶の精密計測ja
出現コレクション:学術雑誌掲載論文等

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