collaborators

9 papers

hep-ph2026

Neutron star with dark matter using vector portal

Deepak Kumar, Ranjita K. Mohapatra, Hiranmaya Mishra +1

Compact astrophysical objects, such as neutron star, can provide a unique environment where the interplay between strongly interacting nuclear matter and dark matter (DM) can yield…

astro-ph.HE2026

Effects of dark matter and magnetic field on neutron star properties in relativistic mean-field theory: A single-fluid approach

Neeshu Rani, M. Mishra, Deepak Kumar +1

Neutron stars, due to their extremely high matter density and strong magnetic field, provide the best environment for exploring new physics beyond the Standard Model of particle ph…

nucl-th2025

Constraints on maximum neutron star mass from proto-neutron star evolution

Deepak Kumar, Tuhin Malik, Hiranmaya Mishra +1

A proto-neutron star (PNS) gets formed after a successful supernova when the stellar remnant decouples from the ejecta. In this study, we explore a relativistic framework for the f…

astro-ph.HE2025

Modification of the universal relation between mass, radius and nonradial -mode oscillation in proto-neutron stars

Deepak Kumar, Asit Karan, Anshuman Verma +2

Neutron stars are usually assumed to be cold; however, in certain dynamical astrophysical scenarios such as newly born neutron stars or binary star mergers, the temperature effects…

astro-ph.HE2025

Analyzing the dense matter equation of states in the light of the compact object HESS J1731-347

Skund Tewari, Sagnik Chatterjee, Deepak Kumar +1

The recent mass () and radius () measurement of HESS J1731-347 made it one of the most fascinating object if it i…

hep-ph2025

Axion effects on the non-radial oscillations of neutron stars

Deepak Kumar, Hiranmaya Mishra

The effects of axions on quark matter equation of state (EOS) is studied within the three flavor Nambu--Jona-Lasinio model and its effects on on the non-radial oscillations of neut…