Gate-Tunable Unconventional Unidirectional Magnetoresistance in Chiral Tellurium Nanosheets

Abstract Chiral materials, which lack inversion and mirror symmetries, host spin textures in momentum space that give rise to current-induced spin polarization. In bulk Te, symmetry restricts the induced spin polarization to the chiral axis, allowing unidirectional magnetoresistance (UMR) only when the magnetic field is aligned with this direction. Here, we demonstrate an unconventional UMR in chiral Te nanosheets that emerges under a magnetic field transverse to the chiral axis. The unconventional UMR exhibits nearly linear magnetic-field and current dependences and reverses sign with opposite crystal handedness, confirming its intrinsic chiral origin. First-principles calculations explain the unconventional UMR by out-of-plane spin polarization induced by symmetry reduction in Te nanosheets. Furthermore, electrostatic gating experiments demonstrate that the unconventional UMR is governed by the electronic structure near the Fermi level. These results establish symmetry reduction and Fermi-level control as effective routes to generating multiaxis spin polarization in chiral materials.

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Publication Details

Journal
Nano Letters
Published
2026-09-30
DOI
https://doi.org/10.1021/acs.nanolett.6c03583
Primary Topic
Topological Materials and Phenomena
Type
article
Field-Weighted Citation Impact
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article

Gate-Tunable Unconventional Unidirectional Magnetoresistance in Chiral Tellurium Nanosheets

Jang‐Ung Park, Younghun Jo, Jaimin Kang, Hanhwi Jang et al.
Nano Letters
Topological Materials and Phenomena
article

Gate-Tunable Unconventional Unidirectional Magnetoresistance in Chiral Tellurium Nanosheets

Jang‐Ung Park, Younghun Jo, Jaimin Kang, Hanhwi Jang, Jong-Guk Choi, Yeon Sik Jung, Soogil Lee, Kyung‐Jin Lee, Hee-Chang Kyung, Geun-Hee Lee, Kab-Jin Kim, San Ko
article en

Abstract

Abstract Chiral materials, which lack inversion and mirror symmetries, host spin textures in momentum space that give rise to current-induced spin polarization. In bulk Te, symmetry restricts the induced spin polarization to the chiral axis, allowing unidirectional magnetoresistance (UMR) only when the magnetic field is aligned with this direction. Here, we demonstrate an unconventional UMR in chiral Te nanosheets that emerges under a magnetic field transverse to the chiral axis. The unconventional UMR exhibits nearly linear magnetic-field and current dependences and reverses sign with opposite crystal handedness, confirming its intrinsic chiral origin. First-principles calculations explain the unconventional UMR by out-of-plane spin polarization induced by symmetry reduction in Te nanosheets. Furthermore, electrostatic gating experiments demonstrate that the unconventional UMR is governed by the electronic structure near the Fermi level. These results establish symmetry reduction and Fermi-level control as effective routes to generating multiaxis spin polarization in chiral materials.

Nano Letters
Northwestern University (US), Gachon University (KR), Korea Advanced Institute of Science and Technology (KR), Korea Basic Science Institute (KR)
Openalex Percentile: Top 14%
Topological Materials and Phenomena
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