Strong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxide

Electron correlation normally makes electrons less mobile, but it is still not clear when correlation becomes very strong in Dirac semimetals. Here, Fujioka et al. report a very high electron mobility exceeding 60,000 cm2V−1s−1 in correlated Dirac semimetal of perovskite CaIrO3, due to the enhanced...

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Main Authors: J. Fujioka, R. Yamada, M. Kawamura, S. Sakai, M. Hirayama, R. Arita, T. Okawa, D. Hashizume, M. Hoshino, Y. Tokura
Format: Article
Language:English
Published: Nature Portfolio 2019-01-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-08149-y
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author J. Fujioka
R. Yamada
M. Kawamura
S. Sakai
M. Hirayama
R. Arita
T. Okawa
D. Hashizume
M. Hoshino
Y. Tokura
author_facet J. Fujioka
R. Yamada
M. Kawamura
S. Sakai
M. Hirayama
R. Arita
T. Okawa
D. Hashizume
M. Hoshino
Y. Tokura
author_sort J. Fujioka
collection DOAJ
description Electron correlation normally makes electrons less mobile, but it is still not clear when correlation becomes very strong in Dirac semimetals. Here, Fujioka et al. report a very high electron mobility exceeding 60,000 cm2V−1s−1 in correlated Dirac semimetal of perovskite CaIrO3, due to the enhanced electron correlation nearby the Mott transition.
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spelling doaj.art-cd9d2e6d922548798105e290fa694ae42022-12-21T21:19:48ZengNature PortfolioNature Communications2041-17232019-01-011011610.1038/s41467-018-08149-yStrong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxideJ. Fujioka0R. Yamada1M. Kawamura2S. Sakai3M. Hirayama4R. Arita5T. Okawa6D. Hashizume7M. Hoshino8Y. Tokura9Department of Applied Physics, University of TokyoDepartment of Applied Physics, University of TokyoRIKEN Center for Emergent Matter Science (CEMS)RIKEN Center for Emergent Matter Science (CEMS)RIKEN Center for Emergent Matter Science (CEMS)Department of Applied Physics, University of TokyoDepartment of Applied Physics, University of TokyoRIKEN Center for Emergent Matter Science (CEMS)PRESTO, Japan Science and Technology AgencyDepartment of Applied Physics, University of TokyoElectron correlation normally makes electrons less mobile, but it is still not clear when correlation becomes very strong in Dirac semimetals. Here, Fujioka et al. report a very high electron mobility exceeding 60,000 cm2V−1s−1 in correlated Dirac semimetal of perovskite CaIrO3, due to the enhanced electron correlation nearby the Mott transition.https://doi.org/10.1038/s41467-018-08149-y
spellingShingle J. Fujioka
R. Yamada
M. Kawamura
S. Sakai
M. Hirayama
R. Arita
T. Okawa
D. Hashizume
M. Hoshino
Y. Tokura
Strong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxide
Nature Communications
title Strong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxide
title_full Strong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxide
title_fullStr Strong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxide
title_full_unstemmed Strong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxide
title_short Strong-correlation induced high-mobility electrons in Dirac semimetal of perovskite oxide
title_sort strong correlation induced high mobility electrons in dirac semimetal of perovskite oxide
url https://doi.org/10.1038/s41467-018-08149-y
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