论文标题
在涡流磁性纳米特中的三麦克农相互作用的理论
Theory of three-magnon interaction in a vortex-state magnetic nanodot
论文作者
论文摘要
我们使用载体汉密尔顿形式主义(VHF)来研究理论上三麦克农的参数相互作用(或三波分裂)在磁涡流基态以磁性磁盘状态下。发现磁盘中的三波分裂遵守两个选择规则:(i)保存所得的自旋波模式的总方位数,以及(ii)相互作用模式的径向数量的不平等,如果驱动场直接激发的模式是径向对称的(即,如果是径向对称的(即,如果直接激发的模式是$ m = 0 $ = 0 $)。然而,由于涡流芯的影响,选择规则(II)在“小”磁盘中放松。我们还发现,直接激发模式的三波相互作用的效率很大程度上取决于所得模式的方位角和径向模式的数量,在几个分裂通道(几对结果模式)同时大致满足分裂的谐振条件下,这在情况下变得确定。 VHF分析计算与实验和微磁模拟的良好一致性证明了VHF形式主义的能力,可以预测三波分裂的实际分裂通道和驱动场阈值的幅度。
We use vector Hamiltonian formalism (VHF) to study theoretically three-magnon parametric interaction (or three-wave splitting) in a magnetic disk existing in a magnetic vortex ground state. The three-wave splitting in a disk is found to obey two selection rules: (i) conservation of the total azimuthal number of the resultant spin-wave modes, and (ii) inequality for the radial numbers of interacting modes, if the mode directly excited by the driving field is radially symmetric (i.e. if the azimuthal number of the directly excited mode is $m = 0$). The selection rule (ii), however, is relaxed in the "small" magnetic disks, due to the influence of the vortex core. We also found, that the efficiency of the three-wave interaction of the directly excited mode strongly depends on the azimuthal and radial mode numbers of the resultant modes, that becomes determinative in the case when several splitting channels (several pairs of resultant modes) simultaneously approximately satisfy the resonance condition for the splitting. The good agreement of the VHF analytic calculations with the experiment and micromagnetic simulations proves the capability of the VHF formalism to predict the actual splitting channels and the magnitudes of the driving field thresholds for the three-wave splitting.