English

Single femtosecond laser pulse-driven ferromagnetic switching

Mesoscale and Nanoscale Physics 2025-11-03 v1 Materials Science Applied Physics Optics

Abstract

Light pulses offer a faster, more energy-efficient, and direct route to magnetic bit writing, pointing toward a hybrid memory and computing paradigm based on photon transmission and spin retention. Yet progress remains hindered, as deterministic, single-pulse optical toggle switching has so far been achieved only with ferrimagnetic materials, which require too specific a rare-earth composition and temperature conditions for technological use. In mainstream ferromagnet--central to spintronic memory and storage--such bistable switching is considered fundamentally difficult, as laser-induced heating does not inherently break time-reversal symmetry. Here, we report coherent magnetization switching in ferromagnets, driven by thermal anisotropy torque with single laser pulses. The toggle switching behavior is robust over a broad range of pulse durations, from femtoseconds to picoseconds, a prerequisite for practical applications. Furthermore, the phenomenon exhibits reproducibility in CoFeB/MgO-based magnetic tunnel junctions with a high magnetoresistance exceeding 110%, as well as the scalability down to nanoscales with remarkable energy efficiency (17 fJ per 100-nm-sized bit). These results mark a notable step toward integrating opto-spintronics into next-generation memory and storage technologies.

Keywords

Cite

@article{arxiv.2510.27288,
  title  = {Single femtosecond laser pulse-driven ferromagnetic switching},
  author = {Chen Xiao and Boyu Zhang and Xiangyu Zheng and Yuxuan Yao and Jiaqi Wei and Dinghao Ma and Yuting Gong and Rui Xu and Xueying Zhang and Yu He and Wenlong Cai and Yan Huang and Daoqian Zhu and Shiyang Lu and Kaihua Cao and Hongxi Liu and Pierre Vallobra and Xianyang Lu and Youguang Zhang and Bert Koopmans and Weisheng Zhao},
  journal= {arXiv preprint arXiv:2510.27288},
  year   = {2025}
}

Comments

19 pages, 7 figures

R2 v1 2026-07-01T07:15:18.093Z