论文标题
各向异性天际扩散,由现场诱导的对称性断裂控制
Anisotropic skyrmion diffusion controlled by field-induced symmetry breaking
论文作者
论文摘要
颗粒的扩散具有广泛的影响,从基于粒子的软物质系统到具有特定电子特性的固态系统。最近,在磁性领域,已经证明了磁性天空的扩散,拓扑稳定的准粒子。在这里,我们表明,通过应用磁性内部场并因此打破了系统的对称性,Skyrmion扩散变成各向异性,并且平行于场轴的扩散速度更快,并且垂直于它的扩散较慢。我们进一步表明,应用场的绝对值控制扩散系数的绝对值,因此可以唯一地调整扩散的方向及其强度。基于随机硫素方程,我们可以通过应用平面内场的椭圆形变形,解释观察到的各向异性扩散。
Diffusion of particles has wide repercussions ranging from particle-based soft matter systems to solid state systems with particular electronic properties. Recently, in the field of magnetism, diffusion of magnetic skyrmions, topologically stabilized quasi-particles, has been demonstrated. Here we show that by applying a magnetic in-plane field and therefore breaking the symmetry of the system, the skyrmion diffusion becomes anisotropic with faster diffusion parallel to the field axis and slower diffusion perpendicular to it. We furthermore show that the absolute value of the applied field controls the absolute values of the diffusion coefficients so that one can thereby uniquely tune both the orientation of the diffusion and its strength. Based on the stochastic Thiele equation, we can explain the observed anisotropic diffusion as a result of the elliptical deformation of the skyrmions by the application of the in-plane field.