activity
19982002
most citedStudy of Proto Strange Stars (PSS) in Temperature and Density Dependent Quark Mass Model

26 citations · 55 across the 4 of their papers we have counts for

collaborators

6 papers

astro-ph2002★ 26 cited

Study of Proto Strange Stars (PSS) in Temperature and Density Dependent Quark Mass Model

V. K. Gupta, Asha Gupta, S. Singh +1

We report on the study of the mass-radius (M-R) relation and the radial oscillations of proto strange stars. For the quark matter we have employed the well known density dependent…

astro-ph2002★ 23 cited

Radial Oscillations of Hybrid Stars

V. K. Gupta, Vinita Tuli, Ashok Goyal

We study the effect of quark and nuclear matter mixed phase on the radial oscillation modes of neutron stars. For this study we have considered recent models from two classes of eq…

astro-ph2001★ 1 cited

Radial Oscillations of Neutron Stars in Strong Magnetic Fields

V. K. Gupta, Vinita Tuli, S. Singh +2

The eigen frequencies of radial pulsations of neutron stars are calculated in a strong magnetic field. At low densities we use the magnetic BPS equation of state(EOS) similar to th…

astro-ph2000★ 5 cited

Effect of Magnetic Field on the Phase Transition from Nuclear Matter to Quark Matter during Proto-Neutron Star Evolution

V. K. Gupta, Asha Gupta, S. Singh +1

We have studied phase transition from hadron matter to quark matter in the presence of high magnetic fields incorporating the trapped electron neutrinos at finite temperatures. We…

astro-ph2000

Bulk Viscosity of Magnetized Neutron Star Matter

J D Anand, V K Gupta, Ashok Goyal +2

We study the effect of magnetic field on the bulk viscosity of nuclear matter in neutron stars. We employ the framework of relativistic mean field theory to observe the dense nucle…

hep-ph1998

Nuclear Matter in Intense Magnetic Field and Weak Processes

Ashok Goyal, V. K. Gupta, Kanupriya +1

We study the effect of magnetic field on the dominant neutrino emission processes in neutron stars.The processes are first calculated for the case when the magnetic field does not…