论文标题
高磁场中抗铁磁磁力中铁磁磁性的超快出现
Ultrafast Emergence of Ferromagnetism in Antiferromagnetic FeRh in High Magnetic Fields
论文作者
论文摘要
飞秒激光脉冲对FERH的超快加热会引起磁结构相的转变,从抗磁磁到铁磁状态。为了揭示这种过渡的超快速动力学,我们在磁光度KERR效应的帮助下研究了磁化动力学,并在广泛的温度(从4 K到400 K)和磁场(最高25 t)中研究了磁化动力学。观察到了三种不同类型的超快磁化动力学,使用数值计算的H-T相图,差异是通过对应于A(i)共线性抗抗铁磁性的FERH的不同初始状态来解释的,(ii)倾斜的抗抗铁磁和(III)spins的铁磁性。我们认为,在倾斜的抗铁磁相中,FERH的超快加热几乎是该材料中磁化强度最快的出现。该磁化的时间尺度为2 ps,这对应于较早报道的相变时结构变化的时间尺度。
Ultrafast heating of FeRh by a femtosecond laser pulse launches a magneto-structural phase transition from an antiferromagnetic to a ferromagnetic state. Aiming to reveal the ultrafast kinetics of this transition, we studied magnetization dynamics with the help of the magneto-optical Kerr effect in a broad range of temperatures (from 4 K to 400 K) and magnetic fields (up to 25 T). Three different types of ultrafast magnetization dynamics were observed and, using a numerically calculated H-T phase diagram, the differences were explained by different initial states of FeRh corresponding to a (i) collinear antiferromagnetic, (ii) canted antiferromagnetic and (iii) ferromagnetic alignment of spins. We argue that ultrafast heating of FeRh in the canted antiferromagnetic phase launches practically the fastest possible emergence of magnetization in this material. The magnetization emerges on a time scale of 2 ps, which corresponds to the earlier reported time-scale of the structural changes during the phase transition.