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Spin and valley-polarized multiple Fermi surfaces of α-RuCl3/bilayer graphene heterostructure

Title
Spin and valley-polarized multiple Fermi surfaces of α-RuCl3/bilayer graphene heterostructure
Author(s)
Kim, SoyunHong, JeonghoonWatanabe, KenjiTaniguchi, TakashiFalson, JosephKim, JeongwooKim, Youngwook
Issued Date
2023-10
Citation
Applied Physics Letters, v.123, no.17
Type
Article
ISSN
0003-6951
Abstract
We report the transport properties of α-RuCl3/bilayer graphene heterostructures, where carrier doping is induced by a work function difference, resulting in distinct electron and hole populations in α-RuCl3 and bilayer graphene, respectively. Through a comprehensive analysis of multi-channel transport signatures, including Hall measurements and quantum oscillation, we unveil significant band modifications within the system. In particular, we observe the emergence of spin and valley-polarized multiple hole-type Fermi pockets, originating from the spin-selective band hybridization between α-RuCl3 and bilayer graphene, breaking the spin degree of freedom. Unlike the α-RuCl3/monolayer graphene system, the presence of different hybridization strengths between α-RuCl3 and the top and bottom graphene layers leads to an asymmetric behavior of the two layers, confirmed by effective mass experiments, resulting in the manifestation of valley-polarized Fermi pockets. These compelling findings establish α-RuCl3 proximitized to bilayer graphene as an outstanding platform for engineering its unique low-energy band structure. © 2023 Author(s).
URI
http://hdl.handle.net/20.500.11750/46641
DOI
10.1063/5.0170810
Publisher
American Institute of Physics Inc.
Related Researcher
  • 김영욱 Kim, Youngwook
  • Research Interests Quantum Transport; Mesoscopic Physics
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Appears in Collections:
Department of Physics and Chemistry Nanomaterials and Quantum Device Lab 1. Journal Articles

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