Lin Shi-Zeng, Batista Cristian D
Theoretical Division, T-4 and CNLS, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Department of Physics and Astronomy, The University of Tennessee, Knoxville, Tennessee 37996, USA.
Phys Rev Lett. 2018 Feb 16;120(7):077202. doi: 10.1103/PhysRevLett.120.077202.
Skyrmions are disklike objects that typically form triangular crystals in two-dimensional systems. This situation is analogous to the so-called pancake vortices of quasi-two-dimensional superconductors. The way in which Skyrmion disks or "pancake Skyrmions" pile up in layered centrosymmetric materials is dictated by the interlayer exchange. Unbiased Monte Carlo simulations and simple stabilization arguments reveal face centered cubic and hexagonal close packed Skyrmion crystals for different choices of the interlayer exchange, in addition to the conventional triangular crystal of Skyrmion lines. Moreover, an inhomogeneous current induces a sliding motion of pancake Skyrmions, indicating that they behave as effective mesoscale particles.
斯格明子是盘状物体,通常在二维系统中形成三角晶体。这种情况类似于准二维超导体中所谓的煎饼状涡旋。斯格明子盘或“煎饼状斯格明子”在层状中心对称材料中堆积的方式由层间交换决定。无偏蒙特卡罗模拟和简单的稳定性论证表明,除了传统的斯格明子线三角晶体外,对于层间交换的不同选择,还会出现面心立方和六方密堆积的斯格明子晶体。此外,不均匀电流会引起煎饼状斯格明子的滑动运动,这表明它们表现为有效的中尺度粒子。