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Exploring physical features of anisotropic quark stars in Brans-Dicke theory with a massive scalar field via embedding approach
Authors:Abdelghani Errehymy  G Mustafa  Youssef Khedif  Mohammed Daoud
Institution:1. Laboratory of High Energy Physics and Condensed Matter (LPHEMaC), Department of Physics, Faculty of Sciences A?n Chock, Hassan II University of Casablanca, B.P. 5366 Maarif, Casablanca 20100, Morocco2. Department of Physics, Zhejiang Normal University, Jinhua 321004, China3. Department of Physics, Faculty of Sciences, University of Ibn Tofail, B.P. 133, Kenitra 14000, Morocco4. Abdus Salam International Centre for Theoretical Physics, Miramare, Trieste 34151, Italy
Abstract:The main aim of this study is to explore the existence and salient features of spherically symmetric relativistic quark stars in the background of massive Brans-Dicke gravity. The exact solutions to the modified Einstein field equations are derived for specific forms of coupling and scalar field functions using the equation of state relating to the strange quark matter that stimulates the phenomenological MIT-Bag model as a free Fermi gas of quarks. We use a well-behaved function along with the Karmarkar condition for class-one embedding as well as junction conditions to determine the unknown metric tensors. The radii of strange compact stars viz., PSR J1416-2230, PSR J1903+327, 4U 1820-30, CenX-3, and EXO1785-248, are predicted via their observed mass for different values of the massive Brans-Dicke parameters. We explore the influences of the mass of scalar field \begin{document}$m_{\phi}$\end{document}, coupling parameter \begin{document}$\omega_{\rm BD}$\end{document}, and bag constant \begin{document}${\cal{B}}$\end{document} on state determinants and perform several tests on the viability and stability of the constructed stellar model. Conclusively, we find that our stellar system is physically viable and stable as it satisfies all the energy conditions and necessary stability criteria under the influence of a gravitational scalar field.
Keywords:Brans-Dicke gravity  karmarkar's condition  exact solutions  strange stars  MIT bag EoS  anisotropy
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