4.6 Article

Magnetic field induced formation of a stationary charge density wave in a conducting Mobius stripe

期刊

PHYSICAL REVIEW B
卷 103, 期 24, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.103.245416

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  1. Westlake University - Leading Innovative and Entrepreneur Team Introduction Program of Zhejiang Province [041020100118, 2018R01002]
  2. RFBR [21-52-10005]
  3. Russian Federation [MK-5318.2021.1.2]

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This study investigates the disappearance of magnetic field induced edge currents in a Mobius stripe, leading to the formation of a stationary charge density wave. The interplay between the magnetic field dependence of the chemical potential and the screened Coulomb repulsion of charge carriers governs the profile of this wave, providing an experimental tool for studying electron density of states in two-dimensional crystal films.
Magnetic field induced edge currents propagate in opposite directions at opposite edges of a Hall bar. We consider a system that possesses just one edge: a Mobius stripe. We show that if the carrier mean free path is less than the width of the stripe, magnetic field induced edge currents vanish. Instead, a stationary charge density wave is formed. Its profile is governed by the interplay between the magnetic field dependence of the chemical potential and the screened Coulomb repulsion of charge carriers. This effect offers an experimental tool for studies of the electron density of states in two-dimensional crystal films.

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