Electrical Tracking of the Mott Insulating Kitaev Magnet using Graphene/α-RuCl<sub>3</sub> Heterostructure

  • Chau, Tuan Khanh; 
  • Choi, Youngsu; 
  • Hwang, Kyusung; 
  • Oh, Gyounghoon; 
  • Akhtar, Sophia; 
  • ... Lee, Hyun-Yong; 
  • 외 4명
Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

Electrical signatures for quantum magnetic phases of alpha-RuCl3 sensed by an adjacent graphene field-effect transistor (FET) are reported. The gate-voltage dependence of the graphene FET reveals p-type doping beneath alpha-RuCl3 caused by the charge transfer due to the work function difference. Furthermore, the gate-voltage hysteresis exhibits a marked change in the transport behavior with the temperature variation. The high-T simple paramagnetic phase and the low-T zigzag antiferromagnetic phase of alpha-RuCl3 exhibit negligible hysteresis. In sharp contrast, a huge hysteresis of the graphene FET at intermediate temperatures is observed. The possibility that the observed conductance hysteresis is associated with the intriguing continuum excitations of the thermally induced Kitaev paramagnet state is discussed. The results show that the proximity effect-based electric approach can be utilized for investigating charge-neutral quasiparticles in quantum magnetic insulators.

키워드

alpha-RuCl3; Kitaev system; heterostructure; graphene; fractionalized excitations; electrical detection; QUANTUM SPIN LIQUID; IDENTIFICATION; ALPHA-RUCL3; GRAPHENE; ANYONS
제목
Electrical Tracking of the Mott Insulating Kitaev Magnet using Graphene/α-RuCl<sub>3</sub> Heterostructure
저자
Chau, Tuan Khanh; Choi, Youngsu; Hwang, Kyusung; Oh, Gyounghoon; Akhtar, Sophia; Kim, Jeongyong; Choi, Kwang-Yong; Lee, Hyun-Yong; Hong, Sung Ju; Suh, Dongseok
DOI
10.1002/adfm.202306964
발행일
2024-01-04
유형
Article; Early Access
저널명
Advanced Functional Materials
권
34
호
16