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Intrinsic Spin Decay Length in Antiferromagnetic Insulator

Materials Science 2019-08-28 v1

Abstract

We report intrinsic spin decay length of an antiferromagnetic insulator. We found that at an antiferromagnetic/ferromagnetic interface, a spin current generated by spin pumping is strongly suppressed by two-magnon scattering. By eliminating the two-magnon contribution, we discovered that the characteristic length of spin decay in NiO changes by two-orders of magnitude through the paramagnetic to antiferromagnetic transition. The spin decay length in the antiferromagnetic state is longer than 100 nm, which is an order of magnitude longer than previously believed. These results provide a crucial piece of information for the fundamental understanding of the physics of spin transport.

Keywords

Cite

@article{arxiv.1902.02462,
  title  = {Intrinsic Spin Decay Length in Antiferromagnetic Insulator},
  author = {Hiroto Sakimura and Akio Asami and Takashi Harumoto and Yoshio Nakamura and Ji Shi and Kazuya Ando},
  journal= {arXiv preprint arXiv:1902.02462},
  year   = {2019}
}
R2 v1 2026-06-23T07:34:12.036Z