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Higgs boson and top-quark masses and parity-symmetry restoration

机译:希格斯玻色子和夸克质量与奇偶对称恢复

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摘要

The recent ATLAS and CMS experiments show the first observations of a new particle in the search for the Standard Model Higgs boson at the LHC. We revisit the scenario that high-dimensional operators of fermions must be present due to the theoretical inconsistency of the fundamental cutoff (quantum gravity) with the parity-violating gauge symmetry of the Standard Model. Studying the four-fermion interaction of the third quark family, we show that at an intermediate energy threshold E≈4.27×103GeV for the four-fermion coupling being larger than a critical value, the spontaneous symmetry-breaking phase transits to the strong-coupling symmetric phase where composite Dirac fermions form fully preserving the chiral gauge symmetry of the Standard Model and the parity-symmetry is restored. Under this circumstance, we perform the standard analysis of renormalization-group equations of the Standard Model in the spontaneous symmetry-breaking phase. As a result, the Higgs boson mass m_H≈126.7GeV and top-quark mass m_t≈172.7GeV are obtained without drastically fine-tuning the four-fermion coupling.
机译:最近的ATLAS和CMS实验表明,在LHC上寻找希格斯玻色子标准模型时,首次观察到了一个新粒子。我们重新审视了由于基本截止(量子引力)与标准模型的奇偶校验规对称性在理论上的不一致性而必须存在高维费米子算子的情况。研究了第三夸克族的四费米相互作用,我们发现在四能费耦合的中间能量阈值E≈4.27×103GeV大于临界值时,自发对称破坏相转变为强耦合。形成对称狄拉克费米子的对称相完全保留了标准模型的手性规对称性,并且恢复了奇偶对称性。在这种情况下,我们在自发对称破坏阶段执行标准模型的重归一化组方程的标准分析。结果,获得了希格斯玻色子质量m_H≈126.7GeV和顶夸克质量m_t≈172.7GeV,而没有大幅度地微调四费米子耦合。

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