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Nucleon decay via dimension 6 operators in anomalous U(1)_A SUSY GUT

Abstract

Nucleon lifetimes for various decay modes via dimension 6 operators are calculated in the anomalous U(1)AU(1)_A GUT scenario, in which the unification scale Λu\Lambda_u becomes smaller than the usual supersymmetric (SUSY) unification scale ΛG=2×1016\Lambda_G=2\times 10^{16} GeV in general. Since the predicted lifetime τ(pπ0+ec)\tau(p\rightarrow \pi^0+e^c) becomes around the experimental lower bound though it is strongly dependent on the explicit models, the discovery of the nucleon decay in near future can be expected. We explain why the two ratios R1Γnπ0+νcΓpπ0+ecR_1\equiv\frac{\Gamma_{n \rightarrow \pi^0 + \nu^c}}{\Gamma_{p \rightarrow \pi^0 + e^c}} and R2ΓpK0+μcΓpπ0+ecR_2\equiv\frac{\Gamma_{p \rightarrow K^0 + \mu^c}}{\Gamma_{p \rightarrow \pi^0 + e^c}} are important in identifying grand unification group and we show that three anomalous U(1)AU(1)_A SUSY GUT models with SU(5)SU(5), SO(10)SO(10) and E6E_6 grand unification group can be identified by measuring the two ratios. If R1R_1 is larger than 0.40.4, the grand unification group is not SU(5)SU(5), and moreover if R2R_2 is larger than 0.30.3, the grand unification group is implied to be E6E_6.Comment: 25 pages, 5 figures, v2:replace figures by colored figures, v3:final version to be published in PR

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