Spin-orbit coupling induced separation and hidden spin textures in spin-1 Bose-Einstein condensates

Abstract

We analytically and numerically investigate the ground state of the spin-orbit coupled spin-1 Bose-Einstein condensates in an external parabolic potential. When the spin-orbit coupling strength is comparable with that of the trapping potential, the density distribution centers of different components of the spinor condensate deviate evidently from the trap center in the plane wave and stripe phases. When 1, the magnitude of this deviation decreases as is getting larger and larger. Correspondingly, periphery half-skyrmions textures arise. This deviation can be reflected by the non-uniform magnetic moment in the z direction, Fz. With the manipulation of the external trap, the local magnitude of Fz can be increased evidently. This kind of increase of Fz is also observed in the square vortex lattice phase of the condensate.

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