Resources for Computational Astrophysics, Summer Project 2021, IIT Kanpur
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Updated
Jul 15, 2021 - Jupyter Notebook
Resources for Computational Astrophysics, Summer Project 2021, IIT Kanpur
C++ and JavaScript N-body dark matter simulations testing the dark matter hypothesis through NFW halo concentration analysis and Baryons-only comparative modelling
SiMon -- Simulation Monitor
PLUTO: A Numerical Code for Computational Astrophysics
Schrödinger Wave-mechanics and Large Scale Structure — PhD thesis (2011) with 2026 review notes and corrections
CompactStar is a modular C++ framework for modeling neutron stars, hybrid stars, and exotic compact objects. It includes GR stellar-structure solvers (TOV + Hartle), thermal–chemical–spin evolution, baryon-number–violating (BNV) microphysics, and a full EOS engine for dense matter.
Laniakea is a Ultra-Light Dark Matter Dynamics Pseudo-Spectral solver written in C/C++
HuBBLE is a Galactic Dynamics Simulation project made in C++
Multi-dimensional higher-order finite volume code with constrained transport for astrophysical simulations
A computational science blogging site.
Smoothed Particle Hydrodynamics (SPH) simulations in 2D: custom developed SPH solver for modeling cloud-cloud collisions in astrophysical context.
Personal project to find periodic orbits around 216-Kleopatra Asteroid. Based on Abad et al., 2024
Computational astrophysics summer 2026 research on dwarf minor merging at different angles. We quantify the likelihood of finding evidence of minor merging by detecting substructures in the halo of hosts at a given angle. We aim to provide predictions for LSST.
Repository for the Computational Astrophysics course - 2023 - UniPD
A framework to model stellar irradiated disks with frequency-dependent absorption and scattering opacities in Athena++ (Baronett, Jiang et al., in revision)
Comprehensive Python toolkit for analyzing the Lyman-alpha forest from cosmological simulations (CAMELS project). Features multi-line spectral analysis, CGM-targeted observations, and memory-efficient comparison tools for large-scale parameter studies.
The EntropicGravity-Py library implements a high-performance N-Body simulation engine that replaces the standard Newtonian potential with Erik Verlinde's Entropic Force model. The goal is to audit whether the observed "mass discrepancies" in galaxies can be naturally explained by the thermodynamics of spacetime info-dynamics.
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