Viscous Hall effect in graphene superlattice enabled via proximity screening

  • Kim, San
  • Park, Sang Hyeon
  • Il Ahn, Sang
  • Xu, Shui Gang
  • Watanabe, Ken Ji
  • ... Kim, Min Soo
  • 외 1명
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초록

In electronic systems with strong electron-electron interactions, charge carriers can exhibit fluidlike behavior governed by viscosity. While such hydrodynamic regimes have been observed in pristine graphene, realizing similar behavior in moir & eacute; superlattices has been challenging due to enhanced momentum-relaxing umklapp electron-electron scattering. Here, we show that placing a graphene/hBN superlattice in close proximity to a conductive screening layer suppresses umklapp momentum relaxation, creating favorable conditions for the observation of viscous electron flow. The hydrodynamic response near the first Dirac point remains largely insensitive to the moir & eacute; potential, allowing clear observation of the viscous Hall effect and extraction of the electron-electron scattering length. These results identify proximity screening as a practical route to tune scattering processes and enable quantitative measurement of electron viscosity in moir & eacute; superlattices. In contrast, transport near the secondary Dirac points is strongly affected by narrow bandwidth, which hinders reliable measurements of the viscous Hall effect in this regime. This limitation highlights the need for multicomponent hydrodynamic frameworks to describe narrow-bandwidth moir & eacute; systems.

키워드

HYDRODYNAMIC ELECTRON FLOWRESISTANCECONDUCTION
제목
Viscous Hall effect in graphene superlattice enabled via proximity screening
저자
Kim, SanPark, Sang HyeonIl Ahn, SangXu, Shui GangWatanabe, Ken JiTaniguchi, TakashiKim, Min Soo
DOI
10.1103/mvtf-mbvq
발행일
2025-11
유형
Article
저널명
Physical Review b
112
20