Inhomogeneous Abelian Chern-Simons Higgs Model with New Inhomogeneous BPS Vacuum and Solitons

Yoonbai Kim, O-Kab Kwon, Hanwool Song, Chanju Kim
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Abstract

We study an inhomogeneous U(1) Chern-Simons Higgs model with a magnetic impurity in the BPS limit. The potential is sextic with both broken and unbroken phases, but its minimum varies spatially depending on the strength of the impurity. While the system lacks translation symmetry, it admits a supersymmetric extension. Depending on the sign of the impurity term, it has either a BPS sector or an anti-BPS sector (but not both), which satisfies the Bogomolny equations. The vacuum configuration of the broken phase is not simply determined by the the minimum of the potential since it is no longer constant, but it becomes a nontrivial function satisfying the Bogomolny equations. Thus, the energy and angular momentum densities of the vacuum locally have nonzero distributions, although the total energy and angular momentum remain zero. As in the homogeneous case, the theory supports various BPS soliton solutions, including topological and nontopological vortices and Q-balls. The vorticities as well as the U(1) charges are exclusively positive or negative. For a Gaussian type impurity as a specific example, we obtain rotationally symmetric numerical solutions and analyze their detailed properties.
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带新非均质 BPS 真空和孤子的非均质阿贝尔切尔-西蒙斯希格斯模型
我们研究了一个非均质 U(1) 切尔-西蒙斯希格斯模型,它在 BPS 极限有一个磁杂质。该模型的势是六次方的,既有断裂相也有未断裂相,但其最小值随杂质的强度而在空间上变化。虽然该系统缺乏平移对称性,但它允许超对称扩展。根据杂质项的符号,它要么有一个 BPS 扇形,要么有一个反 BPS 扇形(但不能同时存在),这两个扇形都满足博戈莫尔尼方程。破缺相的真空构型并不是简单地由势能的最小值决定的,因为它不再是常数,而是变成了一个满足博戈莫尔尼方程的非难函数。因此,尽管总能量和角动量仍然为零,但真空局部的能量和角动量密度具有非零分布。与均相情况一样,该理论支持各种 BPS 孤子解,包括拓扑和非拓扑涡旋和 Q 球。漩涡和 U(1) 电荷完全是正的或负的。以高斯型杂质为例,我们得到了旋转对称数值解,并分析了它们的详细性质。
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