自发对称性破缺

J. Iliopoulos, T. Tomaras
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引用次数: 0

摘要

自发对称性破缺现象是经典物理学和量子物理学中相变的共同特征。在第一部分中,我们研究了全局内对称情况下的这一现象,并给出了Goldstone定理的一个简单证明。我们证明了一个无质量的激励出现,对应于自发破缺对称性的每一个发生器。在第二部分中,我们将这些思想扩展到规范对称的情况,并推导出Brout-Englert-Higgs机制。我们证明了与自发破断发生器相关的规范玻色子获得了一个质量和相应的场,这将是戈德斯通玻色子,解耦并消失。它的自由度用于允许从无质量矢量场到有质量矢量场的过渡。
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Spontaneously Broken Symmetries
The phenomenon of spontaneous symmetry breaking is a common feature of phase transitions in both classical and quantum physics. In a first part we study this phenomenon for the case of a global internal symmetry and give a simple proof of Goldstone’s theorem. We show that a massless excitation appears, corresponding to every generator of a spontaneously broken symmetry. In a second part we extend these ideas to the case of gauge symmetries and derive the Brout–Englert–Higgs mechanism. We show that the gauge boson associated with the spontaneously broken generator acquires a mass and the corresponding field, which would have been the Goldstone boson, decouples and disappears. Its degree of freedom is used to allow the transition from a massless to a massive vector field.
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