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Observation and Control of Chiral Spin Frustration in BiYIG Thin Films

Jinlong Wang1,2,*, Hanchen Wang3,*, Zhewen Xu4,*, Artim L. Bassant5,*, Junfeng Hu2, Wenjie Song2, Chaozhong Li6, Xiangrui Meng7, Mengqi Zhao8 et al.

Song Liu2, Guozhi Chai6, Peng Gao7, Wanjun Jiang8, Desheng Xue6, Dapeng Yu2, William Legrand3,9, Christian L. Degen4,10, Rembert A. Duine5,11,†, Pietro Gambardella3,‡, and Haiming Yu1,2,§

  • 1Fert Beijing Institute, MIIT Key Laboratory of Spintronics, School of Integrated Circuit Science and Engineering, Beihang University, Beijing 100191, China
  • 2International Quantum Academy, Shenzhen 518048, China
  • 3Department of Materials, ETH Zurich, Zurich 8093, Switzerland
  • 4Department of Physics, ETH Zurich, Zurich 8093, Switzerland
  • 5Institute for Theoretical Physics, Utrecht University, Utrecht 3584CC, The Netherlands
  • 6Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education, Lanzhou University, Lanzhou 730000, China
  • 7Interdisciplinary Institute of Light-Element Quantum Materials and Research Center for Light-Element Advanced Materials and International Center for Quantum Materials and Electron Microscopy Laboratory, School of Physics, Peking University, Beijing, China
  • 8State Key Laboratory of Low-Dimensional Quantum Physics and Department of Physics, Tsinghua University, Beijing 100084, China
  • 9CNRS, Institut Néel, Université Grenoble Alpes, Grenoble 38042, France
  • 10Quantum Center, ETH Zurich, Zurich 8093, Switzerland
  • 11Department of Applied Physics, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands

  • *These authors contributed equally to this work.
  • †Contact author: r.a.duine@uu.nl
  • ‡Contact author: pietro.gambardella@mat.ethz.ch
  • §Contact author: haiming.yu@buaa.edu.cn

Phys. Rev. Lett. 135, 066705 – Published 8 August, 2025

DOI: https://doi.org/10.1103/wjvv-lp7n

Abstract

Chiral interactions within magnetic layers stabilize the formation of noncollinear spin textures, which can be leveraged to design devices with tailored magnetization dynamics. Here, we introduce chiral spin frustration in which energetically degenerate magnetic states frustrate the Dzyaloshinskii-Moriya interaction. We demonstrate magnon-driven switching of the chirally frustrated spin states in Bi-substituted yttrium iron garnet thin films. These states are defined by an in-plane macrospin neighboring two out-of-plane spins on either side with opposing chirality. Using scanning nitrogen-vacancy magnetometry and spin pumping, we identified four degenerate frustrated states and achieved their controllable switching via magnon spin torque. Crucially, the switching is unidirectional, with selectivity determined by the incoming magnon direction. This mechanism provides a powerful approach to manipulate frustrated spin states with magnons. Chiral spin frustration unlocks the geometry constraints of conventional frustration, and therefore opens new horizons for frustrated magnetism, paving the way for energy-efficient spintronic devices based on frustration.

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