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SU(3) Simple Group Model and New Z' Properties in Future Linear Colliders
作者姓名:LIU Yao-Bei  WANG Shuai-Wei  ZHANG Wen-Qing
作者单位:[1]Henan Institute of Science and Technology, Xinxiang 453003, China [2]Department of Physics, Nanyang Normal University, Nanyang 473061, China
基金项目:The project supported in part by a grant from Henan Institute of Science and Technology under Grant (No.06040).
摘    要:In the SU(3) simple group model, the new neutral gauge boson Z' couples to pairs of SM fermions with couplings fixed in terms of the SM gauge couplings and depending only on the choice of the fermion embedding. In this paper, we calculate the contributions of this new particle to the processes e^+e^-→l^+l^-, bb^-, and cc^- and study the possibility of detecting this new particle via these processes in the future high-energy linear e^+e^- collider(LC) experiments with √s= 500 GeV and £int= 340 fb^-1. We find that the new gauge boson Z' is most sensitive to the process e^+e^-→b^+b^-. As long as Mz,≤2 TeV , the absolute values of the relative correction parameter are larger than 5%. We calculate the forward-backward asymmetries and left-right asymmetries for the process e^+e^-→c^+c^-, with both the universal and anomaly-free fermion embeddings. Bounds on Z' masses are also estimated within 95% confidence level.

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收稿时间:2008-04-11

SU(3) Simple Group Model and New Z' Properties in Future Linear Colliders
LIU Yao-Bei,WANG Shuai-Wei,ZHANG Wen-Qing.SU(3) Simple Group Model and New Z' Properties in Future Linear Colliders[J].Communications in Theoretical Physics,2009,51(2):299-304.
Authors:LIU Yao-Bei WANG Shuai-Wei ZHANG Wen-Qing
Institution:1.Henan Institute of Science and Technology, Xinxiang 453003, China ;2.Department of Physics, Nanyang Normal University, Nanyang;473061, China
Abstract:In the SU(3) simple group model, the new neutral gaugeboson Z' couples to pairs of SM fermions with couplings fixed interms of the SM gauge couplings and depending only on the choice ofthe fermion embedding. In this paper, we calculate the contributionsof this new particle to the processes e+e¯ → l+ l¯, b{bar{b}, and c\bar{c} and study the possibility of detecting this new particle via these processes in the futurehigh-energy linear e+e¯ collider (LC) experiments with √s=500 GeV and £int=340 fb-1. We find that the new gauge boson Z' is most sensitive to the processe+e– → b\bar{b}. As long as MZ' ≤ 2 TeV , the absolute values of the relative correction parameter are larger than 5%. We calculate the forward-backward asymmetries and left-right asymmetries for the processe+e– → c\bar{c}, with both the universal and anomaly-free fermion embeddings. Bounds on Z' masses are also estimated within 95% confidence level.
Keywords:SU(3) simple group model  relative corrections  forward-backward asymmetry  left-right asymme-try  new gauge boson
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