\begin{document}$ \mu^+ \mu^- \to W^{\prime +} W^{\prime -} \to e^+ e^- n_e \bar{n}_e $\end{document} process, we explore the properties of \begin{document}$ W^\prime $\end{document} in the alternative left-right model. The cross section and angular distribution of the final electron are investigated in a scenario of different \begin{document}$ W^\prime $\end{document} masses and right-handed coupling constants. The forward-backward asymmetry is also an important observable to reflect the properties of \begin{document}$ W^\prime $\end{document}. We provide a method to effectively suppress the background processes by imposing constraints on the transverse momentum \begin{document}$ P_T $\end{document} and azimuthal angle of the final-state electrons α. With cuts of \begin{document}$ 600<P_T<3500 $\end{document} GeV and \begin{document}$ 0.5<\alpha<3 $\end{document}, the significance exceeds 5σ for 4.8 TeV \begin{document}$ W^\prime $\end{document} at a collision energy of 10 TeV."> Extra charged gauge boson <i>W</i>′ in Alternative Left-Right Model at future muon collider -
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