Please use this identifier to cite or link to this item: https://doi.org/10.1038/ncomms10847
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dc.titleLayer-dependent quantum cooperation of electron and hole states in the anomalous semimetal WTe2
dc.contributor.authorDas, P.K
dc.contributor.authorDi Sante, D
dc.contributor.authorVobornik, I
dc.contributor.authorFujii, J
dc.contributor.authorOkuda, T
dc.contributor.authorBruyer, E
dc.contributor.authorGyenis, A
dc.contributor.authorFeldman, B.E
dc.contributor.authorTao, J
dc.contributor.authorCiancio, R
dc.contributor.authorRossi, G
dc.contributor.authorAli, M.N
dc.contributor.authorPicozzi, S
dc.contributor.authorYadzani, A
dc.contributor.authorPanaccione, G
dc.contributor.authorCava, R.J
dc.date.accessioned2020-10-31T11:39:58Z
dc.date.available2020-10-31T11:39:58Z
dc.date.issued2016
dc.identifier.citationDas, P.K, Di Sante, D, Vobornik, I, Fujii, J, Okuda, T, Bruyer, E, Gyenis, A, Feldman, B.E, Tao, J, Ciancio, R, Rossi, G, Ali, M.N, Picozzi, S, Yadzani, A, Panaccione, G, Cava, R.J (2016). Layer-dependent quantum cooperation of electron and hole states in the anomalous semimetal WTe2. Nature Communications 7 : 10847. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms10847
dc.identifier.issn2041-1723
dc.identifier.urihttps://scholarbank.nus.edu.sg/handle/10635/182497
dc.description.abstractThe behaviour of electrons and holes in a crystal lattice is a fundamental quantum phenomenon, accounting for a rich variety of material properties. Boosted by the remarkable electronic and physical properties of two-dimensional materials such as graphene and topological insulators, transition metal dichalcogenides have recently received renewed attention. In this context, the anomalous bulk properties of semimetallic WTe2 have attracted considerable interest. Here we report angle- and spin-resolved photoemission spectroscopy of WTe2 single crystals, through which we disentangle the role of W and Te atoms in the formation of the band structure and identify the interplay of charge, spin and orbital degrees of freedom. Supported by first-principles calculations and high-resolution surface topography, we reveal the existence of a layer-dependent behaviour. The balance of electron and hole states is found only when considering at least three Te-W-Te layers, showing that the behaviour of WTe2 is not strictly two dimensional.
dc.publisherNature Publishing Group
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.sourceUnpaywall 20201031
dc.subjectcrystal
dc.subjectelectron
dc.subjectquantum mechanics
dc.subjectspectroscopy
dc.subjecttransition element
dc.subjectbehavior
dc.subjectcalculation
dc.subjectorbit
dc.subjectspectroscopy
dc.subjecttopography
dc.typeArticle
dc.contributor.departmentSINGAPORE SYNCHROTRON LIGHT SOURCE
dc.description.doi10.1038/ncomms10847
dc.description.sourcetitleNature Communications
dc.description.volume7
dc.description.page10847
dc.published.statepublished
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