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Radiative electroweak symmetry breaking in the extra dimensions scenarios

机译:在超尺寸情况下的辐射电弱对称性破裂

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摘要

We study radiative spontaneous electroweak symmetry breaking in the non-supersymmetric extra dimension scenarios of the standard model extension proposed by Antoniadis et al., Dienes et al. and Pomarol et al. In the framework of the multi-scale effective theory, by using the renormalization group method with an up-to-down viewpoint, we find that the effects of Kaluza-Klein excitations of bosons of the standard model can change the sign of the Higgs mass term of the standard model from positive to negative and break the electroweak symmetry. The critical scale for the electroweak phase transition to occur depends on the compactification scale (say 1.6 (2.0) TeV if the compactification scale is assumed to be 0.8 (1.5) TeV or so), and is insensitive to the mass of the Higgs particle. This radiative spontaneous symmetry breaking mechanism can work naturally in the extra dimension scenarios, and neither new particle contents beyond the standard model from the supersymmetry nor technicolor are necessary.
机译:我们研究了Antoniadis等人,Dienes等人提出的标准模型扩展的非超对称超维情况下的辐射自发性电弱对称性破裂。和Pomarol等。在多尺度有效理论的框架下,通过使用具有上下视点的重归一化组方法,我们发现标准模型玻色子的Kaluza-Klein激发效应可以改变希格斯质量的符号标准模型的项从正到负,破坏了电弱对称性。发生电弱相变的临界尺度取决于致密化尺度(如果假定致密化尺度为0.8(1.5)TeV左右,则为1.6(2.0)TeV),并且对希格斯粒子的质量不敏感。这种辐射自发对称性断裂机制可以在超维情况下自然起作用,并且不需要超对称性之外的标准模型中的新粒子含量,也不需要技术色。

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