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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Topological quantization of the classical stochastic transport of a magnetic skyrmion driven by a ratchetlike spin-polarized electric current at finite temperature
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Topological quantization of the classical stochastic transport of a magnetic skyrmion driven by a ratchetlike spin-polarized electric current at finite temperature

机译:在有限温度下棘轮旋转电流驱动的磁性止泻的经典随机传输的拓扑量化

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摘要

We consider a magnetic skyrmion driven by a spin-polarized electrical current that is periodic in time, and is periodic and asymmetric in a direction different from that of the current itself. We study its classical stochastic transport in a finite temperature, by using the Fokker-Planck equation of the probability distribution, derived from the stochastic equation of motion, the Langevin equation. We also perform numerical simulation of the original Landau-Lifshitz-Gilbert equation describing the spins constituting the skrymion. The probabilistic-average velocity of the skyrmion is along the direction of the periodicity. When the thermal energy is much lower than the potential energy, and their ratio is also much smaller than that between the time periodicity and the diffusion time, the time and probabilistic average velocity is the ratio between the spatial and temporal periodicities multiplied by topological integer called the Chern number. This result provides a practical way of realizing topological numbers in classical stochastic systems and suggests a convenient way of manipulating skyrmions at finite temperatures.
机译:我们考虑由周期性的自旋偏振电流驱动的磁性漏电,并且在与电流本身的方向上是周期性的和不对称的。我们在有限温度下研究其经典随机传输,通过使用概率分布的FOKKER-Planck方程,从动作的随机方程,Langevin方程衍生。我们还执行描述构成Skrymion的旋转的原始Landau-Lifshitz-Gilbert方程的数值模拟。 Skyrmion的概率平均速度沿周期性的方向。当热能远低于势能时,它们的比率也远远小于时间周期性和扩散时间之间的比率,时间和概率平均速度是空间和时间周期之间的比率乘以称为拓扑整数的chern号码。该结果提供了在经典随机系统中实现拓扑数字的实用方法,并提出了一种在有限温度下操纵臭鼬的方便方式。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第10期|104428.1-104428.7|共7页
  • 作者

    Shan-Chang Tang; Yu Shi;

  • 作者单位

    Department of Physics & State Key Laboratory of Surface Physics Fudan University Shanghai 200433 China;

    Department of Physics & State Key Laboratory of Surface Physics Fudan University Shanghai 200433 China;

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  • 正文语种 eng
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