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Scalar-gauge dynamics in (2+1) dimensions at small and large scalar couplings

机译:小型和大型标量耦合器在(2 + 1)维上的标量规动力学

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摘要

We present the results of a detailed calculation of the excitation spectrum of states with quantum numbers JPC = 0++, 1- and 2++ in the three-dimensional SU(2) Higgs model at two values of the scalar self-coupling and for fixed gauge coupling. We study the properties of Polyakov loop operators, which serve to test the confining properties of the model in the symmetric phase. At both values of the scalar coupling we obtain masses of bound states consisting entirely of gauge degrees of freedom (glueballs), which are very close to those obtained in the pure gauge theory. We conclude that the previously observed, approximate decoupling of the scalar and gauge sectors of the theory persists at large scalar couplings. We study the crossover region at large scalar coupling and present a scenario how the confining properties of the model in the symmetric phase are lost inside the crossover by means of flux tube decay. We conclude that the underlying dynamics responsible for the observed dense spectrum of states in the Higgs region at large couplings must be different from that in the symmetric phase. © 1998 Elsevier Science B.V.
机译:我们提供了在二维标量自耦合和两个值处的三维SU(2)Higgs模型中量子数JPC = 0 ++,1-和2 ++的状态激发谱的详细计算结果。用于固定规格的联轴器。我们研究了Polyakov回路算子的性质,这些性质用于测试对称阶段模型的约束性质。在标量耦合的两个值下,我们获得的束缚态质量完全由标尺自由度(胶球)组成,这与在纯标尺理论中获得的质量非常接近。我们得出的结论是,先前观察到的理论的标量和标量扇区的近似解耦在大标量耦合下仍然存在。我们研究了大标量耦合下的分频区域,并提出了一种情况,即如何通过通量管衰减使对称相中模型的约束性质在分频内部丢失。我们得出结论,导致大耦合下希格斯区域中观察到的密集态的基本动力学必须不同于对称相中的动力学。 ©1998 Elsevier Science B.V.

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