论文标题
L $ 1_0 $ FEPT中纵向波动的作用
Role of longitudinal fluctuations in L$1_0$ FePt
论文作者
论文摘要
L $ 1_0 $ FEPT是一系列新型数据存储应用程序的技术重要材料。在有序的FEPT结构中,通常非磁性PT离子获得了磁矩,这取决于源自邻近Fe原子的局部场。在这项工作中,构建了一种FEPT模型,其中使用纵向和旋转自旋动力学模拟了诱导的PT矩。该模型被参数化,以包含交换场与交换场的线性变化,因此在PT位点,磁矩取决于Fe排序。计算了FEPT的居里温度,并与类似的模型非常吻合,该模型通过有效的仅限哈密顿量结合了PT动力学。通过计算动态相关函数,各向异性场和吉尔伯特阻尼会在一系列温度下提取。各向异性表现出具有指数$ n \ 2.1 $的温度的幂律依赖性。这与在实验上观察到的情况非常吻合,并且可以在不包括两离子各向异性项的情况下获得,就像其他方法一样。我们的工作表明,将纵向波动融入自旋动力学计算中对于理解具有诱导力矩的材料的特性至关重要。
L$1_0$ FePt is a technologically important material for a range of novel data storage applications. In the ordered FePt structure the normally non-magnetic Pt ion acquires a magnetic moment, which depends on the local field originating from the neighboring Fe atoms. In this work a model of FePt is constructed, where the induced Pt moment is simulated by using combined longitudinal and rotational spin dynamics. The model is parameterized to include a linear variation of the moment with the exchange field, so that at the Pt site the magnetic moment depends on the Fe ordering. The Curie temperature of FePt is calculated and agrees well with similar models that incorporate the Pt dynamics through an effective Fe-only Hamiltonian. By computing the dynamic correlation function the anisotropy field and the Gilbert damping are extracted over a range of temperatures. The anisotropy exhibits a power-law dependence with temperature with exponent $n\approx2.1$. This agrees well with what observed experimentally and it is obtained without including a two-ion anisotropy term as in other approaches. Our work shows that incorporating longitudinal fluctuations into spin dynamics calculations is crucial for understanding the properties of materials with induced moments.