6 papers
Microscopic Interaction versus Purely Gravitational Coupling in Strange Quark Stars Admixed with Dark Matter: A One-Fluid and Two-Fluid Comparison
J. Sedaghat, G. H. Bordbar, M. Haghighat +1
In this study, we investigate strange quark stars (SQSs) admixed with scalar dark matter (DM), focusing on the role of microscopic interactions versus purely gravitational coupling…
Two fluid CFL strange quark stars with scalar dark matter: critical mass and mass gap implications
J. Sedaghat, G. H. Bordbar, M. Haghighat +1
We investigate the structure of strange quark stars (SQSs) in the color--flavor--locked (CFL) phase in the presence of scalar bosonic dark matter within a two--fluid formalism empl…
Structure of Anisotropic Magnetized Neutron Stars in f(R,T) Gravity with Realistic Equation of State
M. Savari, G. H. Bordbar, J. Sedaghat +1
In this study, within the framework of f(R,T) modified gravity, we investigate the influence of coupling parameter, magnetic field and anisotropy parameter on the neutron star stru…
Influence of dark matter on the structure of strange quark stars in one-fluid model
J. Sedaghat, G. H. Bordbar, M. Haghighat +1
This work studies the influence of scalar dark matter on the structural properties of strange quark stars (SQS) within a one-fluid framework, considering Yukawa interactions betwee…
The effect of three-body nucleon-nucleon interaction on the ground state binding energy of the light nuclei
F. Kamgar, G. H. Bordbar, S. M. Zebarjad +1
We calculate the ground state binding energies of the light nuclei such as 4He, 6Li, 12C and 14N by considering the effect of three-body nucleon-nucleon interaction. We use the eff…
Constraint on the equation of state of strange quark star: Perturbative QCD along with a density-dependent bag constant
J. Sedaghat, G. H. Bordbar, S. M. Zebarjad
This study investigates the structural properties of strange quark stars (SQS) using a Quantum Chromodynamics (QCD) perturbative model combined with the latest Particle Data Group…