反铁磁性
超短脉冲
凝聚态物理
马格农
自旋电子学
飞秒
皮秒
自旋(空气动力学)
物理
铁磁性
正铁氧体
连贯性(哲学赌博策略)
磁学
自旋波
热涨落
各向异性
材料科学
光学
自旋极化
磁化
自旋霍尔效应
量子力学
激光器
磁场
热力学
电子
作者
M. A. Weiss,Andreas Herbst,Jacob P. Schlegel,Tobias Dannegger,M. Evers,Andreas Donges,Makoto Nakajima,Alfred Leitenstorfer,Sebastian T. B. Goennenwein,U. Nowak,Takayuki Kurihara
标识
DOI:10.1038/s41467-023-43318-8
摘要
Owing to their high magnon frequencies, antiferromagnets are key materials for future high-speed spintronics. Picosecond switching of antiferromagnetic spin systems has been viewed a milestone for decades and pursued only by using ultrafast external perturbations. Here, we show that picosecond spin switching occurs spontaneously due to thermal fluctuations in the antiferromagnetic orthoferrite Sm0.7Er0.3FeO3. By analysing the correlation between the pulse-to-pulse polarisation fluctuations of two femtosecond optical probes, we extract the autocorrelation of incoherent magnon fluctuations. We observe a strong enhancement of the magnon fluctuation amplitude and the coherence time around the critical temperature of the spin reorientation transition. The spectrum shows two distinct features, one corresponding to the quasi-ferromagnetic mode and another one which has not been previously reported in pump-probe experiments. Comparison to a stochastic spin dynamics simulation reveals this new mode as smoking gun of ultrafast spontaneous spin switching within the double-well anisotropy potential.
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