Winding real and order-parameter spaces via lump solitons of spinor BEC on sphere

Yan He, Chih-Chun Chien
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引用次数: 1

Abstract

Abstract The three condensate wavefunctions of a F = 1 spinor Bose–Einstein condensate on a spherical shell can map the real space to the order-parameter space that also has a spherical geometry, giving rise to topological excitations called lump solitons. The homotopy of the mapping endows the lump solitons with quantized winding numbers counting the wrapping between the two spaces. We present several lump-soliton solutions to the nonlinear coupled equations minimizing the energy functional. The energies of the lump solitons with different winding numbers indicate coexistence of lumps with different winding numbers and a lack of advantage to break a higher-winding lump soliton into multiple lower-winding ones. Possible implications are discussed since the predictions are testable in cold-atom experiments.
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利用球上旋量BEC的块孤子缠绕实参数和序参数空间
球壳上F = 1旋量玻色-爱因斯坦凝聚的三个凝聚波函数可以将实空间映射到同样具有球几何的序参数空间,从而产生称为块状孤子的拓扑激励。映射的同伦赋予块状孤子量子化的圈数来计算两个空间之间的缠绕。给出了最小化能量泛函非线性耦合方程的几个块孤子解。不同圈数块状孤子的能量表明不同圈数的块状孤子共存,缺乏将一个高圈数的块状孤子分解成多个低圈数的块状孤子的优势。由于这些预测在冷原子实验中是可检验的,因此讨论了可能的影响。
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