凝聚态物理
消磁场
飞秒
激发态
磁矩
超短脉冲
铁磁性
磁化动力学
从头算量子化学方法
自旋(空气动力学)
从头算
原子物理学
基态
电子
超快激光光谱学
材料科学
激光器
化学
磁化
物理
光学
磁场
有机化学
热力学
量子力学
分子
作者
J. K. Dewhurst,S. Shallcross,Ilie Radu,Peter Elliott,Clemens von Korff Schmising,S. Sharma
摘要
Using an ultrashort laser pulse, we explore ab initio the spin dynamics of Gdx(FeCo)1−x at femtosecond time scales. Optical excitations are found to drive charges from Fe majority d-states to unoccupied Gd f-minority states with f-electron character excited occupation lagging behind that of the d-electron character, leading to substantial demagnetization of both species while leaving the global moment almost unchanged. For x > 0.33, this results in the creation of an ultrafast ferromagnetic (FM) transient by the end of the laser pulse with the Gd demagnetization rate slower than that of Fe. For all concentrations, the Gd moments begin to rotate from their ground state orientations developing in-plane moments of between 0.2 and 0.5 μB. Thus, the ultrafast spin dynamics of the material captures three important ingredients of all optical switching that occurs at much later (picosecond) times: (i) the development of a FM transient, (ii) the different rates of demagnetization of Fe and Gd, and (iii) the breaking of the collinear symmetry of the ground state. Furthermore, several predictions are made about the behavior of Fe–Gd alloys that can be experimentally tested and can lead to a spin-filtering device.
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