collaborators

6 papers

astro-ph.HE2026

Emergent gravity from Michel flow with position dependent adiabatic index

Apashanka Das, Souvik Ghose, Tapas K. Das

Spherically symmetric, general relativistic Bondi accretion is known as the Michel flow. The stationary integral transonic solutions for the Michel flow has been constructed for mu…

gr-qc2026

Emergent gravity from nonlinear perturbation of spherical accretion with variable adiabatic index

Rohit Ghosh, Souvik Ghose, Biplab Raychaudhuri +2

The main aim of the present work is to demonstrate that the analogue gravity phenomena are not an artifact of linear perturbation, rather gravity-like effects emerge through the no…

astro-ph.HE2026

On the spin dependence of the emergent gravity phenomena as observed in axially symmetric black hole accretion with spatially varying adiabatic index

Kalyanbrata Pal, Souvik Ghose, Ripon Sk +2

The present work addresses an axisymmetrically accreting black hole system from three perspectives: the astrophysical, the dynamical systems, and the emergent gravity standpoint. S…

gr-qc2025

Gravity as emergent phenomena for spherically symmetric black hole accretion of multi-component flow with relativistic equation of state

Tuhin Paul, Aishee Chakraborty, Souvik Ghose +1

We investigate analogue gravity phenomena arising as a result of the linear perturbation of the spherically symmetric accretion flows onto non rotating black holes, where the gravi…

astro-ph.HE2025

Effect of spin on the dynamics of multi-component trans-relativistic accretion flows around Kerr black holes

Kalyanbrata Pal, Souvik Ghose, Shilpa Sarkar +1

We investigate the axially symmetric accretion of low angular momentum hydrodynamic matter onto a rotating black hole. The gravitational field under consideration is assumed to be…

gr-qc2025

Spherical accretion in the Schwarzschild spacetime in the Newtonian analogous construct

Shubhrangshu Ghosh, Souvik Ghose, Kalyanbrata Pal +2

The velocity-dependent Newtonian analogous potentials (NAPs) corresponding to general relativistic (GR) spacetimes accurately capture most of the relativistic features, including a…