\begin{document}$-1 < w < -1/3$\end{document}, modifies the temperature and the Gibbs free energy of a black hole. The phase transition temperature \begin{document}$T_{\rm{HP}}$\end{document} and the Gibbs free energy \begin{document}$G$\end{document} are first analytically investigated for the special case of \begin{document}$w=-2/3$\end{document}, and then, the results of numerical simulations are shown for general \begin{document}$w$\end{document}. The phase transition temperature \begin{document}$T_{\rm{HP}}$\end{document} increases with pressure and decreases with electric potential. In addition, \begin{document}$T_{\rm{HP}}$\end{document} significantly decreases owing to the quintessence field, which generates negative pressure around the black hole."> Hawking-Page phase transitions of charged AdS black holes surrounded by quintessence -
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