Department of Physics, University of California, Berkeley, California 94720, USA.
Institute for Theoretical Physics, University of Innsbruck, A-6020 Innsbruck, Austria.
Phys Rev Lett. 2018 Aug 24;121(8):085704. doi: 10.1103/PhysRevLett.121.085704.
We study the dynamics and unbinding transition of vortices in the compact anisotropic Kardar-Parisi-Zhang equation. The combination of nonequilibrium conditions and strong spatial anisotropy drastically affects the structure of vortices and amplifies their mutual binding forces, thus stabilizing the ordered phase. We find novel universal critical behavior in the vortex-unbinding crossover in finite-size systems. These results are relevant for a wide variety of physical systems, ranging from strongly coupled light-matter quantum systems to dissipative time crystals.
我们研究了紧束缚各向异性 Kardar-Parisi-Zhang 方程中涡旋的动力学和离解跃迁。非平衡条件和强空间各向异性的结合极大地影响了涡旋的结构,并增强了它们之间的结合力,从而稳定了有序相。我们在有限尺寸系统中的涡旋离解交叉中发现了新的普遍临界行为。这些结果与从强耦合光物质量子系统到耗散时间晶体等各种物理系统都有关。