English

An antiferromagnetic diode effect in even-layered MnBi2Te4

Strongly Correlated Electrons 2024-10-30 v2

Abstract

In a PN junction, the separation between positive and negative charges leads to diode transport. In the past few years, the intrinsic diode transport in noncentrosymmetric polar conductors has attracted great interest, because it suggests novel nonlinear applications and provides a symmetry-sensitive probe of Fermi surface. Recently, such studies have been extended to noncentrosymmetric superconductors, realizing the superconducting diode effect. Here, we show that, even in a centrosymmetric crystal without directional charge separation, the spins of an antiferromagnet (AFM) can generate a spatial directionality, leading to an AFM diode effect. We observe large second-harmonic transport in a nonlinear electronic device enabled by the compensated AFM state of even-layered MnBi2Te4. We also report a novel electrical sum-frequency generation (SFG), which has been rarely explored in contrast to the well-known optical SFG in wide-gap insulators. We demonstrate that the AFM enables an in-plane field-effect transistor and harvesting of wireless electromagnetic energy. The electrical SFG establishes a powerful method to study nonlinear electronics built by quantum materials. The AFM diode effect paves the way for potential device concepts including AFM logic circuits, self-powered AFM spintronics, and other applications that potentially bridge nonlinear electronics with AFM spintronics.

Keywords

Cite

@article{arxiv.2406.16771,
  title  = {An antiferromagnetic diode effect in even-layered MnBi2Te4},
  author = {Anyuan Gao and Shao-Wen Chen and Barun Ghosh and Jian-Xiang Qiu and Yu-Fei Liu and Yugo Onishi and Chaowei Hu and Tiema Qian and Damien Bérubé and Thao Dinh and Houchen Li and Christian Tzschaschel and Seunghyun Park and Tianye Huang and Shang-Wei Lien and Zhe Sun and Sheng-Chin Ho and Bahadur Singh and Kenji Watanabe and Takashi Taniguchi and David C. Bell and Arun Bansil and Hsin Lin and Tay-Rong Chang and Amir Yacoby and Ni Ni and Liang Fu and Qiong Ma and Su-Yang Xu},
  journal= {arXiv preprint arXiv:2406.16771},
  year   = {2024}
}

Comments

33+8 pages, 14+2 figures. arXiv admin note: text overlap with arXiv:2306.09575

R2 v1 2026-06-28T17:17:29.651Z