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Broadband spectroscopy of thermodynamic magnetization fluctuations through a ferromagnetic spin-reorientation transition

机译:铁磁自旋取向转变的热力学磁化涨落的宽带光谱学

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摘要

We use scanning optical magnetometry to study the broadband frequency spectra of spontaneous magnetization fluctuations, or “magnetization noise”, in an archetypal ferromagnetic film that can be smoothly tuned through a spin reorientation transition (SRT). The SRT is achieved by laterally varying the magnetic anisotropy across an ultrathin Pt/Co/Pt trilayer, from the perpendicular to in-plane direction, via graded Ar+ irradiation. In regions exhibiting perpendicular anisotropy, the power spectrum of the magnetization noise, S(ν), exhibits a remarkably robust ν−3/2 power law over frequencies ν from 1 kHz to 1 MHz. As the SRT region is traversed, however, S(ν) spectra develop a steadily-increasing critical frequency, ν0, below which the noise power is spectrally flat, indicating an evolving low-frequency cutoff for magnetization fluctuations. The magnetization noise depends strongly on applied in- and out-of-plane magnetic fields, revealing local anisotropies and also a field-induced emergence of fluctuations in otherwise stable ferromagnetic films. Finally, we demonstrate that higher-order correlators can be computed from the noise. These results highlight broadband spectroscopy of thermodynamic fluctuations as a powerful tool to characterize the interplay between thermal and magnetic energy scales, and as a means of characterizing phase transitions in ferromagnets.
机译:我们使用扫描光学磁力分析技术研究原型铁磁薄膜中的自发磁化涨落或“磁化噪声”的宽带频谱,该频谱可以通过自旋重新取向转变(SRT)进行平滑调整。通过梯度Ar + 辐照从垂直方向到面内方向横向改变超薄Pt / Co / Pt三层的磁各向异性来实现SRT。在表现出垂直各向异性的区域中,磁化噪声的功率谱S(ν)在1 kHz到1 MHz的频率ν上表现出非常强大的ν -3/2 功率定律。但是,当遍历SRT区域时,S(ν)谱会形成一个稳定增加的临界频率ν0,低于该临界频率时,噪声功率在频谱上是平坦的,表明发生了磁化波动的低频截止。磁化噪声在很大程度上取决于所施加的平面内和平面外磁场,从而揭示出局部各向异性,以及在其他情况下稳定的铁磁膜中磁场引起的波动。最后,我们证明可以从噪声中计算出高阶相关器。这些结果突出了热力学涨落的宽带光谱学,作为表征热能和磁能级之间相互作用的有力工具,以及表征铁磁体相变的一种手段。

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