DOE OSTI · 2563368
Transient magnetoelastic coupling in CrSBr
Abstract
Recent research has revealed remarkable properties of the two-dimensional (2D) van der Waals layered crystal CrSBr, which is both a semiconductor and an A-type antiferromagnet. Here, in this study, we show the role of strong magnetoelastic coupling in the generation and propagation of coherent magnons in CrSBr. Time- and spatially resolved magneto-optical Kerr effect microscopy reveals two time-varying transient strain fields induced by out-of-plane transverse and in-plane longitudinal lattice displacements. These transient strain fields launch coherent wavepackets of magnons, optical and acoustic, at 24.6 ± 0.8 and 33.4 ± 0.5GHz, respectively. These findings suggest mechanisms for controlling and manipulating coherent magnons from distinct magnetoelastic couplings in this 2D van der Waals magnetic semiconductor.
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Bae, Youn Jue, Handa, Taketo, Dai, Yanan, Wang, Jue, Liu, Huicong, Scheie, Allen, Chica, Daniel G., Ziebel, Michael E., Kent, Andrew D., Xu, Xiaodong, Shen, Ka, Roy, Xavier, Zhu, Xiaoyang. 2024-03-01. Transient magnetoelastic coupling in CrSBr. https://doi.org/10.1103/physrevb.109.104401
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