activity
20182020
most citedThermal evolution of the early Moon

8 citations · 19 across the 4 of their papers we have counts for

collaborators

5 papers

astro-ph.SR2020

Origin and evolution of the Galactic inventories of interstellar dust and its composition

Anuj Gupta, Sandeep Sahijpal

Interstellar dust is a significant component of matter in the galaxies. The dust owns its origin and reprocessing in a wide range of astrophysical environments. In order to underst…

astro-ph.EP20208 cited

Thermal evolution of the early Moon

Sandeep Sahijpal, Vishal Goyal

The early thermal evolution of Moon has been numerically simulated to understand the magnitude of the impact induced heating and the initially stored thermal energy of the accretin…

astro-ph.SR20194 cited

Thermodynamics of the Condensation of Dust Grains in Wolf-Rayet Stellar Winds

Anuj Gupta, Sandeep Sahijpal

Wolf-Rayet (WR) stars are the evolutionary phases of very massive stars prior to the final supernova explosion stage. These stars lose substantial mass during WN and WC stages. The…

astro-ph.GA20197 cited

Heterogeneous evolution of the galaxy and the origin of the short-lived nuclides in the early solar system

T. Kaur, S. Sahijpal

We present galactic chemical evolution (GCE) models of the short-lived radionuclides (SLRs), 26Al, 36Cl, 41Ca, 53Mn and 60Fe, across the entire Milky Way galaxy. The objective is t…

astro-ph.GA2018

A Monte Carlo based simulation of the galactic chemical evolution of the Milky Way galaxy

Sandeep Sahijpal, Tejpreet Kaur

The formation and chemical evolution of the Milky Way Galaxy is numerically simulated by developing a Monte Carlo approach to predict the elemental abundance gradients and other ga…