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Vortex lattices in binary Bose-Einstein condensates with dipole-dipole interactions

机译:二元Bose-Einstein的涡旋格与偶极偶极相互作用凝结

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We study the structure and stability of vortex lattices in two-component rotating Bose-Einstein condensates with intrinsic dipole-dipole interactions and contact interactions. To address experimentally accessible coupled systems, we consider ~(164)Dy-~(162)Dy and ~(168)Er-~(164)Dy mixtures, which feature different miscibilities. The corresponding dipole moments are μ_(D_y) = 10_(μ_B) and μ_(E_r) = 7_(μ_B), where μ_B is the Bohr magneton. For comparison we also discuss a case where one of the species is nondipolar. Under a large aspect ratio of the trap, we consider mixtures in the pancake-shaped format,which are modeled by effective two-dimensional coupled Gross-Pitaevskii equations, with a fixed polarization of the magnetic dipoles. Then, the miscibility and vortex-lattice structures are studied by varying the coefficients of the contact interactions (assuming the use of the Feshbach-resonance mechanism) and the rotation frequency. We present phase diagrams for several types of lattices in the parameter plane of the rotation frequency and the ratio of inter- and intraspecies scattering lengths. The vortex structures are found to be diverse for the more miscible ~(164)Dy-~(162)Dy composition, with a variety of shapes, whereas for the less miscible case of ~(168)Er-~(164)Dy, the lattice patterns mainly feature circular or square formats.
机译:我们研究了具有固有偶极偶偶极相互作用和接触相互作用的双组分旋转Bose-Einstein凝聚液中涡旋格的结构和稳定性。为了解决实验访问的耦合系统,我们考虑〜(164)Dy-〜(162)Dy和〜(168)y〜(164)Dy混合物,其具有不同的误导性。相应的偶极矩是μ_(d_y)= 10_(μ_b)和μ_(e_r)= 7_(μ_b),其中μ_b是bohr marbaseon。为了比较,我们还讨论了其中一种物种是非疟原的情况。在陷阱的大宽高比下,我们考虑煎饼形式的混合物,其由有效的二维耦合总体升性的规模建模,具有磁偶极子的固定偏振。然后,通过改变触点相互作用的系数(假设使用Feshbach-Arrance机构)和旋转频率来研究溶解性和涡旋晶格结构。我们在旋转频率的参数平面中呈现几种类型的格子的相图,以及散射长度的帧间和有条成的散射长度的比率。发现涡旋结构对于更加混溶的〜(164)Dy-〜(162)Dy组合物,具有多种形状,而对于〜(168)的可混溶性案例,〜(164)Dy,格子图案主要具有圆形或方形格式。

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