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Gauge-Higgs EW and Grand Unification

机译:衡量 - 希格斯ew和大统一

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摘要

Four-dimensional Higgs field is identified with the extra-dimensional component of gauge potentials in the gauge-Higgs unification scenario. SO(5) × U(1) gauge-Higgs EW unification in the Randall-Sundrum warped space is successful at low energies. The Higgs field appears as an Aharonov-Bohm phase θ_H in the fifth dimension. Its mass is generated at the quantum level and is finite. The model yields almost the same phenomenology as the standard model for θ_H < 0.1, and predicts Z' bosons around 6-10 TeV with very broad widths. The scenario is generalized to SO(11) gauge-Higgs grand unification. Fermions are introduced in the spinor and vector representations of SO(11). Proton decay is naturally forbidden.
机译:用仪表 - HGGS统一场景中的仪表势的尺寸分量识别四维HIGGS字段。所以(5)×U(1)衡量 - HAUGE-HIGGS在Randall-undrum扭曲空间中的统一在低能量下成功。 HIGGS字段显示为第五维中的AHARONOV-BOHM相位θ_h。它的质量在量子级产生,是有限的。该模型产生几乎与θ_H<0.1的标准模型相同的现象学,并且预测Z'玻色子大约6-10 Tev,具有非常宽的宽度。这种情况是概括为(11)衡量的巨大统一。在旋锭剂和载体表示中引入了FEMIONE(11)。质子腐烂自然被禁止。

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