HAKL, M., S. TCHOUMAKOV, I. CRASSEE, A. AKRAP, B.A. PIOT, C. FAUGERAS, G. MARTINEZ, A. NATEPROV, E. ARUSHANOV, F. TEPPE, R. SANKAR, W.L. LEE, J. DEBRAY, Ondřej CAHA, Jiří NOVÁK, M.O. GOERBIG, M. POTEMSKI and M. ORLITA. Energy scale of Dirac electrons in Cd3As2. Physical Review B. College PK: The American Physical Society, 2018, vol. 97, No 11, p. "115206-1" - "115206-7", 7 pp. ISSN 2469-9950. Available from: https://dx.doi.org/10.1103/PhysRevB.97.115206.
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Basic information
Original name Energy scale of Dirac electrons in Cd3As2
Authors HAKL, M. (203 Czech Republic), S. TCHOUMAKOV (250 France), I. CRASSEE (756 Switzerland), A. AKRAP (756 Switzerland), B.A. PIOT (250 France), C. FAUGERAS (250 France), G. MARTINEZ (250 France), A. NATEPROV (498 Republic of Moldova), E. ARUSHANOV (498 Republic of Moldova), F. TEPPE (250 France), R. SANKAR (158 Taiwan), W.L. LEE (158 Taiwan), J. DEBRAY (250 France), Ondřej CAHA (203 Czech Republic, guarantor, belonging to the institution), Jiří NOVÁK (203 Czech Republic, belonging to the institution), M.O. GOERBIG (250 France), M. POTEMSKI (250 France) and M. ORLITA (203 Czech Republic).
Edition Physical Review B, College PK, The American Physical Society, 2018, 2469-9950.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 10302 Condensed matter physics
Country of publisher United States of America
Confidentiality degree is not subject to a state or trade secret
WWW Web vydavatele
Impact factor Impact factor: 3.736
RIV identification code RIV/00216224:14310/18:00103621
Organization unit Faculty of Science
Doi http://dx.doi.org/10.1103/PhysRevB.97.115206
UT WoS 000428239200010
Keywords in English MASSLESS KANE FERMIONS; CADMIUM ARSENIDE; BAND-STRUCTURE; SEMIMETAL CD3AS2; II3V2 COMPOUNDS; CRYSTAL; SEMICONDUCTORS; PLASMON
Tags rivok
Tags International impact, Reviewed
Changed by Changed by: Mgr. Pavla Foltynová, Ph.D., učo 106624. Changed: 4/3/2019 14:48.
Abstract
Cadmium arsenide (Cd3As2) has recently became conspicuous in solid-state physics due to several reports proposing that it hosts a pair of symmetry-protected 3D Dirac cones. Despite vast investigations, a solid experimental insight into the band structure of this material is still missing. Here we fill one of the existing gaps in our understanding of Cd3As2, and based on our Landau-level spectroscopy study, we provide an estimate for the energy scale of 3D Dirac electrons in this system. We find that the appearance of such charge carriers is limited-contrary to a widespread belief in the solid-state community-to a relatively small energy scale (below 40 meV).
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LQ1601, research and development projectName: CEITEC 2020 (Acronym: CEITEC2020)
Investor: Ministry of Education, Youth and Sports of the CR
692034, interní kód MUName: TWINFUSYON - Twinning for Improving Capacity of Research in Multifunctional Nanosystems for Optronic Biosensing (Acronym: TWINFUSYON)
Investor: European Union, Spreading excellence and widening participation
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