Contributions from coherent and incoherent lattice excitations to ultrafast optical control of magnetic anisotropy of metallic films

V. N. Kats, T. Linnik, A. S. Salasyuk, A. Rushforth, Mu Wang, Peter Wadely, A. Akimov, S. Cavill, V. Holý, A. Kalashnikova, A. Scherbakov
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Abstract

Spin-lattice coupling is one of the most prominent interactions mediating response of spin ensemble to ultrafast optical excitation. Here we exploit optically generated coherent and incoherent phonons to drive coherent spin dynamics, i.e. precession, in thin films of magnetostrictive metal Galfenol. We demonstrate unambiguously that coherent phonons, also seen as dynamical strain generated due to picosecond lattice temperature raise, give raise to magnetic anisotropy changes of the optically excited magnetic _lm; and this contribution may be comparable to or even dominate over the contribution from the temperature increase itself, considered as incoherent phonons.
相干和非相干晶格激励对金属薄膜磁各向异性超快光学控制的贡献
自旋-晶格耦合是介导自旋系综对超快光激发响应的最突出的相互作用之一。在这里,我们利用光学产生的相干和非相干声子来驱动磁致伸缩金属Galfenol薄膜中的相干自旋动力学,即进动。我们明确地证明了相干声子,也被看作是由于皮秒晶格温度升高而产生的动态应变,引起光激发磁_lm的磁各向异性变化;这种贡献可能与温度升高本身的贡献相当,甚至占主导地位,被认为是非相干声子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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