Zhang Yanchao, Hang Chao, Huang Guoxiang
State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200241, China.
NYU-ECNU Institute of Physics, New York University at Shanghai, Shanghai 200062, China.
Phys Rev E. 2023 Jul;108(1-1):014208. doi: 10.1103/PhysRevE.108.014208.
We investigate matter-wave solitons in a binary Bose-Einstein condensate (BEC) with spin-orbit (SO) coupling, loaded in a one-dimensional (1D) deep optical lattice and a three-dimensional anisotropic magnetic trap, which creates an array of elongated sub-BECs with transverse tunneling. We show that the system supports 1D continuous and discrete solitons localized in the longitudinal (along the array) and the transverse (across the array) directions, respectively. In addition, such solitons are always unpolarized in the zero-momentum state but polarized in finite-momentum states. We also show that the system supports stable two-dimensional semidiscrete solitons, including single- and multiple-peaked ones, localized in both the longitudinal and transverse directions. Stability diagrams for single-peaked semidiscrete solitons in different parameter spaces are identified. The results reported here are beneficial not only for understanding the physical property of SO-coupled BECs but also for generating new types of matter-wave solitons.
我们研究了加载在一维深光学晶格和三维各向异性磁阱中的具有自旋轨道(SO)耦合的二元玻色-爱因斯坦凝聚体(BEC)中的物质波孤子,该系统产生了一系列具有横向隧穿的细长亚BEC。我们表明,该系统分别支持在纵向(沿阵列方向)和横向(跨阵列方向)局域化的一维连续和离散孤子。此外,此类孤子在零动量状态下总是非极化的,但在有限动量状态下是极化的。我们还表明,该系统支持稳定的二维半离散孤子,包括单峰和多峰孤子,它们在纵向和横向都有局域化。确定了不同参数空间中单峰半离散孤子的稳定性图。这里报道的结果不仅有利于理解SO耦合BEC的物理性质,而且有利于产生新型的物质波孤子。