\begin{document}$ \bar B\rightarrow X_s\gamma $\end{document} and \begin{document}$ B_s^0\rightarrow \mu^+\mu^- $\end{document} in the minimal supersymmetry standard model (MSSM) extension with two triplets and one singlet (TNMSSM). The new particle contents and interactions in the TNMSSM can affect the theoretical predictions of the branching ratios \begin{document}$ {\rm{Br}}(\bar B\rightarrow X_s\gamma) $\end{document} and \begin{document}$ {\rm{Br}}(B_s^0\rightarrow \mu^+\mu^-) $\end{document}, and the corrections from two loop diagrams to the process \begin{document}$ \bar B\rightarrow X_s\gamma $\end{document} can reach around \begin{document}$ 4\% $\end{document}. Considering the latest experimental measurements, the numerical results of \begin{document}$ {\rm{Br}}(\bar B\rightarrow X_s\gamma) $\end{document} and \begin{document}$ {\rm{Br}}(B_s^0\rightarrow \mu^+\mu^-) $\end{document} in the TNMSSM are presented and analyzed. The findings indicate that the results in the TNMSSM can fit the updated experimental data well, and the new parameters \begin{document}$ T_{\lambda},\;\kappa,\;\lambda $\end{document}, clearly affect the theoretical predictions of \begin{document}$ {\rm{Br}}(\bar B\rightarrow X_s\gamma) $\end{document} and \begin{document}$ {\rm{Br}}(B_s^0\rightarrow \mu^+\mu^-) $\end{document}."> <i>B</i> meson rare decays in the TNMSSM -
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