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Polar-Core Spin Vortex of Quasi-2D Spin-2 Condensate in a Flat-Bottomed Optical Trap

机译:Quasi-2d旋转涡旋的偏光旋转涡旋在平底光学阱中的凝结物

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摘要

Motivated by the recent experiments realized in a flat-bottomed optical trap [Science 347 (2015) 167; Nat. Commun. 6 (2015) 6162], we study the ground state of polar-core spin vortex of quasi-2D spin-2 condensate in a homogeneous trap plus a weak magnetic field. The exact spatial distribution of local spin is obtained and the vortex core are observed to decrease with the growth of the effective spin-spin interaction. For the larger effective spin-spin interaction, the spatial distribution of spin magnitude in spin-2 condensate we obtained agrees well with that of spin-1 condensate in a homogeneous trap, where a polar-core spin vortex was schematically demonstrated as a fully-magnetized planar spin texture with a zero-spin core. The effective spin-spin interaction is proportional to both the bare spin-spin interaction and the radius of the homogeneous trap, simultaneously. Thus the polar-core spin vortex we obtained can be easily controlled by the radius of the trap.
机译:最近在平底光学陷阱中实现的实验(科学347(2015)167; NAT。 安排。 6(2015)6162],我们研究了齐次陷阱的氨基芯旋转涡流的偏光芯旋转涡流的研磨状态。 获得局部旋转的确切空间分布,并且观察到涡旋核心随着有效旋转旋转相互作用的生长而降低。 对于较大的有效自旋 - 自旋相互作用,我们获得的旋转2冷凝物中的旋转幅度的空间分布与均匀陷阱中的旋转1冷凝物的旋转级别吻合良好,其中偏光芯旋转涡流被示意性地显示为完全 - 磁化平面旋转纹理与零自旋芯。 有效的旋转自旋相互作用与裸露的旋转旋转相互作用和同时的均匀捕集器的半径成比例。 因此,我们获得的偏光芯旋转涡旋可以容易地通过陷阱的半径来控制。

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