Helical Edge Transport in the ν= 0 Quantum Hall Ferromagnetic State of an Organic Dirac Fermion System

Fuente: arXiv
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Autores principales: Osada, Toshihito, Sato, Mitsuyuki, Konoike, Takako, Kang, Woun
Formato: Preprint
Publicado: 2025
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author Osada, Toshihito
Sato, Mitsuyuki
Konoike, Takako
Kang, Woun
author_facet Osada, Toshihito
Sato, Mitsuyuki
Konoike, Takako
Kang, Woun
contents We experimentally confirm the ν= 0 quantum Hall ferromagnetic (QHF) state, accompanied by helical edge states, in the layered organic Dirac-fermion system α-(ET)2I3 by demonstrating helical edge transport in multilayers. The saturation of interlayer magnetoresistance (MR) in the high-magnetic-field quantum limit does not scale with the sample cross-sectional area and appears when the magnetic field is oriented along the side surface. The in-plane MR exhibits a similar angle dependence, whereas this feature disappears in the Corbino geometry where no edge channels are present. These results are consistent with helical edge transport in the multilayer QHF state. They also rule out the possibility that the observed angle-dependent MR arises from the chiral magnetic effect expected for a 3D Dirac or Weyl semimetal.
format Preprint
id arxiv_https___arxiv_org_abs_2512_00816
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Helical Edge Transport in the ν= 0 Quantum Hall Ferromagnetic State of an Organic Dirac Fermion System
Osada, Toshihito
Sato, Mitsuyuki
Konoike, Takako
Kang, Woun
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
We experimentally confirm the ν= 0 quantum Hall ferromagnetic (QHF) state, accompanied by helical edge states, in the layered organic Dirac-fermion system α-(ET)2I3 by demonstrating helical edge transport in multilayers. The saturation of interlayer magnetoresistance (MR) in the high-magnetic-field quantum limit does not scale with the sample cross-sectional area and appears when the magnetic field is oriented along the side surface. The in-plane MR exhibits a similar angle dependence, whereas this feature disappears in the Corbino geometry where no edge channels are present. These results are consistent with helical edge transport in the multilayer QHF state. They also rule out the possibility that the observed angle-dependent MR arises from the chiral magnetic effect expected for a 3D Dirac or Weyl semimetal.
title Helical Edge Transport in the ν= 0 Quantum Hall Ferromagnetic State of an Organic Dirac Fermion System
topic Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2512.00816