Jakobs F, Atxitia U
Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universität Berlin, 14195 Berlin, Germany.
Phys Rev Lett. 2022 Jul 15;129(3):037203. doi: 10.1103/PhysRevLett.129.037203.
Single-pulse switching has been experimentally demonstrated in ferrimagnetic GdFeCo and Mn_{2}Ru_{x}Ga alloys. Complete understanding of single-pulse switching is missing due to the lack of an established theory accurately describing the transition to the nonequilibrium reversal path induced by femtosecond laser photoexcitation. In this work, we present general macroscopic theory for the magnetization dynamics of ferrimagnetic materials upon femtosecond laser excitation. Our theory reproduces quantitatively all stages of the switching process observed in experiments. We directly compare our theory to computer simulations using atomistic spin dynamics methods for both GdFeCo and Mn_{2}Ru_{x}Ga alloys. We provide explicit expressions for the magnetization relaxation rates in terms of microscopic parameters, which allows us to propose universal criteria for switching in ferrimagnets.
已在亚铁磁性的钆铁钴(GdFeCo)和锰钌镓(Mn₂RuxGa)合金中通过实验证明了单脉冲切换。由于缺乏准确描述由飞秒激光光激发引起的向非平衡反转路径转变的成熟理论,因此对单脉冲切换缺乏完整的理解。在这项工作中,我们提出了亚铁磁性材料在飞秒激光激发下磁化动力学的一般宏观理论。我们的理论定量地再现了实验中观察到的切换过程的所有阶段。我们将我们的理论与使用原子自旋动力学方法对钆铁钴和锰钌镓合金进行的计算机模拟直接进行比较。我们根据微观参数给出了磁化弛豫率的明确表达式,这使我们能够提出亚铁磁体切换的通用标准。