Structure, maximum mass, and stability of compact stars in f(Q,T) gravity

被引:0
|
作者
Nashed, G. G. L. [1 ]
Harko, Tiberiu [2 ,3 ]
机构
[1] British Univ Egypt El Sherouk City, Ctr Theoret Phys, Suez Desert Rd, Cairo 11837, Egypt
[2] Babes Bolyai Univ, Dept Phys, Kogalniceanu St, Cluj Napoca 400084, Romania
[3] Astron Observ, 19 Ciresilor St, Cluj Napoca 400487, Romania
来源
EUROPEAN PHYSICAL JOURNAL C | 2024年 / 84卷 / 10期
关键词
EQUATION-OF-STATE; DECOUPLING GRAVITATIONAL SOURCES; WEYL-TYPE F(Q; NEUTRON-STARS; DARK-ENERGY; DYNAMICAL INSTABILITY; ANISOTROPIC SOLUTIONS; FIELD-EQUATIONS; F Q; CONSTRAINTS;
D O I
10.1140/epjc/s10052-024-13436-8
中图分类号
O412 [相对论、场论]; O572.2 [粒子物理学];
学科分类号
摘要
We investigate the properties of compact objects in the f(Q, T) theory, where Q is the non-metricity scalar and T is the trace of the energy-momentum tensor. We derive an interior analytical solution for anisotropic perfect-fluid spheres in hydrostatic equilibrium using the linear form of f(Q,T)=Q+psi T, where psi represents a dimensional parameter. Based on the observational constraints related to the mass and radius of the pulsar SAX J1748.9-2021, psi is set to a maximum negative value of psi(1)=psi/kappa(2)=-0.04, where kappa(2) is the gravitational coupling constant. The solution results in a stable compact object, which does not violate the speed of sound condition c(s)(2 )<= c(2)/3. The effective equation of state is similar to the quark matter equation of state, and involves the presence of an effective bag constant. When psi is negative, the star has a slightly larger size as compared to GR stars with the same mass. The difference in the predicted star size between the theory with a negative psi and GR for the same mass is attributed to an additional force appearing in the hydrodynamic equilibrium equation. The maximum compactness allowed by the strong energy condition for f(Q,T) theory and for GR is C=0.514 and 0.419, respectively, with the f(Q,T) prediction about 10% higher than the GR one. Assuming a surface density at saturation nuclear density of rho(nuc) = 4x10(14) g/cm(3), the maximum mass of the star is 4.66M(circle dot), with a radius of 14.9 km.
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页数:19
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