Title | Analytic solution to pseudo-Landau levels in strongly bent graphene nanoribbons |
Author | |
Corresponding Author | Liu, Tianyu; Lu, Hai-Zhou |
Publication Years | 2022-05-20
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DOI | |
Source Title | |
EISSN | 2643-1564
|
Volume | 4Issue:2 |
Abstract | Nonuniform elastic strain is known to induce pseudo-Landau levels in Dirac materials. But these pseudo-Landau levels are hardly resolvable in an analytic fashion when the strain is strong because of the emerging complicated space dependence in both the strain-modulated Fermi velocity and the strain-induced pseudomagnetic field. We here analytically characterize the solution to the pseudo-Landau levels in strongly bent graphene nanoribbons by treating the effects of the nonuniform Fermi velocity and pseudomagnetic field on equal footing. The analytic solution is detectable through angle-resolved photoemission spectroscopy and allows quantitative comparison between theories and various experimental signatures of transport, such as the Shubnikov-de Haas oscillation in the complete absence of magnetic fields and the negative strain-resistivity resulting from the valley anomaly. The analytic solution can be generalized to various Dirac materials and will shed light on the related experimental explorations and straintronics applications. |
URL | [Source Record] |
Indexed By | |
Language | English
|
SUSTech Authorship | Corresponding
|
Funding Project | National Natural Science Foundation of China[11534001,11974249,11925402]
; National Basic Research Program of China[2015CB921102]
; Guangdong Province[
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WOS Research Area | Physics
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WOS Subject | Physics, Multidisciplinary
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WOS Accession No | WOS:000809919500004
|
Publisher | |
EI Accession Number | 20222512248698
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EI Keywords | Nanoribbons
; Photoelectron Spectroscopy
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ESI Classification Code | Nanotechnology:761
; Chemical Products Generally:804
|
Data Source | Web of Science
|
Citation statistics |
Cited Times [WOS]:2
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Document Type | Journal Article |
Identifier | http://kc.sustech.edu.cn/handle/2SGJ60CL/343065 |
Department | Institute for Quantum Science and Engineering 理学院_物理系 |
Affiliation | 1.Max Planck Inst Phys Komplexer Syst, D-01187 Dresden, Germany 2.Southern Univ Sci & Technol, Inst Quantum Sci & Engn, Shenzhen 518055, Peoples R China 3.Southern Univ Sci & Technol, Dept Phys, Shenzhen 518055, Peoples R China 4.Shenzhen Key Lab Quantum Sci & Engn, Shenzhen 518055, Peoples R China |
First Author Affilication | Institute for Quantum Science and Engineering; Department of Physics |
Corresponding Author Affilication | Institute for Quantum Science and Engineering; Department of Physics |
Recommended Citation GB/T 7714 |
Liu, Tianyu,Lu, Hai-Zhou. Analytic solution to pseudo-Landau levels in strongly bent graphene nanoribbons[J]. PHYSICAL REVIEW RESEARCH,2022,4(2).
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APA |
Liu, Tianyu,&Lu, Hai-Zhou.(2022).Analytic solution to pseudo-Landau levels in strongly bent graphene nanoribbons.PHYSICAL REVIEW RESEARCH,4(2).
|
MLA |
Liu, Tianyu,et al."Analytic solution to pseudo-Landau levels in strongly bent graphene nanoribbons".PHYSICAL REVIEW RESEARCH 4.2(2022).
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