English

Quantum metric nonlinear Hall effect in a topological antiferromagnetic heterostructure

Mesoscale and Nanoscale Physics 2023-07-25 v2 Strongly Correlated Electrons

Abstract

Quantum geometry - the geometry of electron Bloch wavefunctions - is central to modern condensed matter physics. Due to the quantum nature, quantum geometry has two parts, the real part quantum metric and the imaginary part Berry curvature. The studies of Berry curvature have led to countless breakthroughs, ranging from the quantum Hall effect in 2DEGs to the anomalous Hall effect (AHE) in ferromagnets. However, in contrast to Berry curvature, the quantum metric has rarely been explored. Here, we report a new nonlinear Hall effect induced by quantum metric by interfacing even-layered MnBi2Te4 (a PT-symmetric antiferromagnet (AFM)) with black phosphorus. This novel nonlinear Hall effect switches direction upon reversing the AFM spins and exhibits distinct scaling that suggests a non-dissipative nature. Like the AHE brought Berry curvature under the spotlight, our results open the door to discovering quantum metric responses. Moreover, we demonstrate that the AFM can harvest wireless electromagnetic energy via the new nonlinear Hall effect, therefore enabling intriguing applications that bridges nonlinear electronics with AFM spintronics.

Keywords

Cite

@article{arxiv.2306.09575,
  title  = {Quantum metric nonlinear Hall effect in a topological antiferromagnetic heterostructure},
  author = {Anyuan Gao and Yu-Fei Liu and Jian-Xiang Qiu and Barun Ghosh and Thaís V. Trevisan and Yugo Onishi and Chaowei Hu and Tiema Qian and Hung-Ju Tien and Shao-Wen Chen and Mengqi Huang and Damien Bérubé and Houchen Li and Christian Tzschaschel and Thao Dinh and Zhe Sun and Sheng-Chin Ho and Shang-Wei Lien and Bahadur Singh and Kenji Watanabe and Takashi Taniguchi and David C. Bell and Hsin Lin and Tay-Rong Chang and Chunhui Rita Du and Arun Bansil and Liang Fu and Ni Ni and Peter P. Orth and Qiong Ma and Su-Yang Xu},
  journal= {arXiv preprint arXiv:2306.09575},
  year   = {2023}
}

Comments

19 pages, 4 figures and a Supplementary Materials with 66 pages, 4 figures and 3 tables. Originally submitted to Science on Oct. 5, 2022

R2 v1 2026-06-28T11:06:45.461Z