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涡旋弦的量子相。

Quantum phases of a vortex string.

机构信息

Department of Physics, Swansea University, Singleton Park, Swansea, SA2 8PP, United Kingdom.

出版信息

Phys Rev Lett. 2009 Dec 4;103(23):231601. doi: 10.1103/PhysRevLett.103.231601.

Abstract

We argue that the world sheet dynamics of magnetic k strings in the Higgs phase of the mass-deformed N = 4 theory is controlled by a bosonic O(3) sigma model with anisotropy and a topological theta term. The theory interpolates between a massless O(2) symmetric regime, a massive O(3) symmetric phase, and another massive phase with a spontaneously broken Z(2) symmetry. The first two phases are separated by a Kosterlitz-Thouless transition. When theta = pi, the O(3) symmetric phase flows to an interacting fixed point; sigma model kinks and their dyonic partners become degenerate, mirroring the behavior of monopoles in the parent gauge theory. This leads to the identification of the kinks with monopoles confined on the string.

摘要

我们认为,在质量变形的 N=4 理论的希格斯相中,磁 k 弦的世界面动力学由各向异性的玻色 O(3)西格玛模型和拓扑 theta 项控制。该理论在无质量 O(2)对称态、有质量 O(3)对称相以及另一个具有自发破缺 Z(2)对称的相之间进行插值。前两个相由科斯特利茨-图尔勒斯相变分开。当 theta = pi 时,O(3)对称相流向相互作用的固定点;西格玛模型扭结及其对偶伙伴变得退化,反映了母体规范理论中磁单极子的行为。这导致扭结与被束缚在弦上的磁单极子的识别。

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