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Matter-wave solitons supported by field-induced dipole-dipole repulsion with spatially modulated strength

机译:具有空间调制强度的场感应偶极-偶极排斥力支持的物质波孤子

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摘要

We demonstrate the existence of one- and two-dimensional (1D and 2D, respectively) bright solitons in the Bose-Einstein condensate with repulsive dipole-dipole interactions induced by a combination of dc and ac polarizing fields, oriented perpendicular to the plane in which the BEC is trapped, assuming that the strength of the fields grows in the radial (r) direction faster than r~3. Stable tightly confined 1D and 2D fundamental solitons, twisted solitons in 1D, and solitary vortices in 2D are found in a numerical form. The fundamental solitons remain robust under the action of an expulsive potential, which is induced by the interaction of the dipoles with the polarizing field. The confinement and scaling properties of the soliton families are explained analytically. The Thomas-Fermi approximation is elaborated for fundamental solitons. The mobility of the fundamental solitons is limited to the central area. Stable 1D even and odd solitons are also found in the setting with a double-well modulation function, along with a regime of Josephson oscillations.
机译:我们证明了Bose-Einstein凝聚物中存在一维和二维(分别为1D和2D)明亮孤子,这些孤子具有与直流和交流极化场相垂直的方向相排斥的排斥偶极-偶极相互作用。假设电场强度沿径向(r)的增长速度快于r〜3,则BEC被捕获。以数值形式发现了稳定的密闭1D和2D基本孤子,1D扭曲的孤子以及2D的孤涡。基本的孤子在偶极子与极化场相互作用引起的排斥势的作用下仍然保持稳健。解析地解释了孤子族的约束和尺度性质。对于基本孤子,详细阐述了Thomas-Fermi近似。基本孤子的移动性仅限于中心区域。稳定的一维偶数和奇数孤子在具有双井调制功能的设置中以及约瑟夫森振荡的情况下也被发现。

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