Lepton flavor violating decays $$l_j\rightarrow {l_i\gamma }$$ in the $$U(1)_X$$SSM model within the mass insertion approximation

Author:

Wang Tong-Tong,Zhao Shu-Min,Zhang Jian-Fei,Dong Xing-Xing,Feng Tai-Fu

Abstract

AbstractThree singlet new Higgs superfields and right-handed neutrinos are added to MSSM to obtain $$U(1)_X$$ U ( 1 ) X SSM model. Its local gauge group is $$SU(3)_C\times SU(2)_L \times U(1)_Y \times U(1)_X$$ S U ( 3 ) C × S U ( 2 ) L × U ( 1 ) Y × U ( 1 ) X . In the framework of $$U(1)_X$$ U ( 1 ) X SSM, we study muon anomalous magnetic moment and lepton flavor violating decays $$l_j\rightarrow {l_i\gamma }(j=2,3;i=1,2)$$ l j l i γ ( j = 2 , 3 ; i = 1 , 2 ) within the mass insertion approximation (MIA). Through the MIA method, we can find the parameters that directly affect the analytical result of the lepton flavor violating decays $$l_j\rightarrow {l_i\gamma }$$ l j l i γ , which make our work more convenient. We want to provide a set of simple analytic formulas for the form factors and the associated effective vertices, that may be very useful for future phenomenological studies of the lepton flavor violating decays. According to the accuracy of the numerical results which the influence of different sensitive parameters, we come to the conclusion that the non-diagonal elements which correspond to the generations of the initial lepton and final lepton are main sensitive parameters and lepton flavor violation (LFV) sources. This work can provide a clear signal of new physics (NP).

Funder

Natural Science Foundation of Hebei Province

National Natural Science Foundation of China

Post-graduate’s Innovation Fund Project of Hebei University

Publisher

Springer Science and Business Media LLC

Subject

Physics and Astronomy (miscellaneous),Engineering (miscellaneous)

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