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Stability of long-lived antiskyrmions in the Mn-Pt-Sn tetragonal Heusler material

机译:MN-PT-SN四方Heusler材料中长寿的寿险恒星的稳定性

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摘要

The lifetime of antiskyrmions at room temperature in an Mn-Pt-Sn tetragonal Heusler material has been calculated using an atomic scale representation including nearly a million spins. The evaluation of the pre-exponential factor in the Arrhenius rate expression for this large system is made possible by implementation of harmonic transition state theory that avoids evaluation of the eigenvalues of the Hessian matrix. The parameter values in the extended Heisenberg Hamiltonian, including anisotropic Dzyaloshinskii-Moriya interaction, are chosen to reproduce experimental observations [Nayak et al. Nature (London) 548, 561 (2017)], in particular, the 150-nm diameter. The calculated results are consistent with the long lifetime observed in the laboratory and this exceptional stability of the antiskyrmions is found to result from large activation energy for collapse due to strong exchange coupling while the pre-exponential factor in the Arrhenius expression for the lifetime is found to have a typical magnitude of 10~(-12) s, despite the large number of spins. The long lifetime is, therefore, found to result from energetic effects rather than entropic effects in this system.
机译:使用包括近百万旋转的原子尺度表示计算了Mn-Pt-Sn四方Heusler材料室温度下的寿命的寿命。通过实施谐波过渡状态理论,可以获得对该大型系统的arrhenius速率表达中的预指数因子的评估,以避免评估Hessian矩阵的特征值。选择扩展的Heisenberg Hamiltonian中的参数值,包括各向异性Dzyaloshinskii-Moriya相互作用,以再现实验观察[Nayak等人。大自然(伦敦)548,561(2017)]特别是150纳米直径。计算结果与实验室中观察到的长寿命一致,并且发现了对抗衡量的这种特殊稳定性,由于强的交换耦合,由于强烈的交换耦合而导致崩溃的大激活能量,而发现寿命的Arrhenius表达的预指数因素尽管有大量的旋转,但典型的10〜(-12)S。因此,寿命长期以来,发现由能量效应而不是该系统中的熵效应导致。

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  • 来源
    《Physical review》 |2020年第13期|134430.1-134430.6|共6页
  • 作者单位

    Science Institute and Faculty of Physical Sciences University of Iceland 107 Reykjavik Iceland Department of Physics St. Petersburg State University 198504 St. Petersburg Russia Faculty of Physics and Engineering ITMO University 197101 St. Petersburg Russia;

    Department of Physics St. Petersburg State University 198504 St. Petersburg Russia Faculty of Physics and Engineering ITMO University 197101 St. Petersburg Russia;

    School of Physics The University of New South Wales Sydney 2052 Australia;

    Science Institute and Faculty of Physical Sciences University of Iceland 107 Reykjavik Iceland Department of Applied Physics Aalto University FIN-00076 Espoo Finland;

    Department of Physics St. Petersburg State University 198504 St. Petersburg Russia Faculty of Physics and Engineering ITMO University 197101 St. Petersburg Russia;

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