论文标题
托管四方MN-PT(PD)-SN系统的磁性弛豫现象的交流敏感性研究
An ac-susceptibility study of magnetic relaxation phenomena in the antiskyrmion hosting tetragonal Mn-Pt(Pd)-Sn system
论文作者
论文摘要
在这里,我们报告了一项详尽的研究,对$ d_ {2d} $对称的Heusler System Mn-pt(PD)-SN的频率依赖性交流磁化敏感性,该系统在较大的温度范围内主持了Antiskyrmions。使用Cole-Cole形式主义的磁性松弛研究揭示了Debye型松弛,在放松时间中分布几乎可以忽略不计。与原型的天空宿主相反,本系统的高居里温度($ t_c $)可确保切换时间较短,并且相应地,需要更高的频率来探测松弛动力学。我们在特征放松时间中发现了非单调的变化,在相位边界\ textIt {via}螺旋$ \ longrightArrow $ antiskyrmion $ \ longrightArrow $ fieldArrow $场极极化状态下,表明较慢的磁力动态在相位共存区域。不同阶段的温度依赖性放松时间为$ 10^{ - 5} -10^{-4} $ s,并遵循具有合理的能量屏障值的众所周知的Arrhenius定律。本研究涉及反对者宿主四方赫斯勒系统中的磁化动力学,这是对反对反矩阵动态方面对其潜在应用的基本理解的重要贡献。
Here, we report an exhaustive study of the frequency-dependent ac-magnetic susceptibility of the $D_{2d}$ symmetric Heusler system Mn-Pt(Pd)-Sn that hosts antiskyrmions over a wide temperature range. Magnetic relaxation studies using Cole-Cole formalism reveal a Debye-type relaxation with a nearly negligible distribution in relaxation times. In contrast to the archetypical skyrmion hosts, the high Curie temperature ($ T_C $) of the present system ensures shorter switching times, and, correspondingly, higher frequencies are required to probe the relaxation dynamics. We find a non-monotonic variation in the characteristic relaxation time with distinct maxima at the phase boundaries \textit{via} helical $\longrightarrow$ antiskyrmion $\longrightarrow$ field-polarized states, indicating slower magnetization dynamics over the region of phase coexistence. The temperature-dependent relaxation time across different phases is of the order of $ 10^{-5} - 10^{-4} $ s and follows the well-known Arrhenius law with reasonable values of the energy barriers. The present study concerning the magnetization dynamics in the antiskyrmion host tetragonal Heusler system is an important contribution towards the basic understanding of the dynamical aspects of antiskyrmions for their potential applications.