Shreyas Bapat

ORCID: 0000-0002-0870-4665
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Research Areas
  • Computational Physics and Python Applications
  • Pulsars and Gravitational Waves Research
  • Distributed and Parallel Computing Systems
  • Relativity and Gravitational Theory
  • Astronomy and Astrophysical Research
  • Particle Detector Development and Performance
  • Gamma-ray bursts and supernovae

Indian Institute of Technology Mandi
2022

The Astropy Collaboration Adrian M. Price-Whelan Pey Lian Lim N. Earl Nathaniel Starkman and 95 more Larry Bradley D. L. Shupe Aarya A. Patil Lía Corrales C. E. Brasseur Maximilian Nöthe Axel Donath Erik Tollerud Brett M. Morris Adam Ginsburg Eero Vaher Benjamin Weaver James Tocknell William Brian Jamieson M. H. van Kerkwijk Thomas Robitaille Bruce Merry Matteo Bachetti Hans Moritz Günther Thomas L. Aldcroft Jaime A. Alvarado-Montes Anne M. Archibald Attila Bódi Shreyas Bapat Geert Barentsen Juanjo Bazán Manish Biswas M. Boquien D. J. Burke Daria Cara Mihai Cara Kyle E. Conroy Simon Conseil Matthew Craig R. Cross Kelle L. Cruz Francesco D’Eugenio Nadia Dencheva Hadrien A. R. Devillepoix J. P. Dietrich Arthur Eigenbrot T. Erben Leonardo Ferreira Daniel Foreman-Mackey Ryan Fox Nabil Freij Suyog Garg Robel Geda Lauren Glattly Yash Gondhalekar Karl D. Gordon David Grant P. Greenfield Austen Groener S. Guest S. Gurovich R. Handberg Akeem Hart Zac Hatfield-Dodds D. Homeier G. Hosseinzadeh T. Jenness Craig Jones P. Joseph J. Bryce Kalmbach E. Karamehmetoglu Mikołaj Kałuszyński Michael S. P. Kelley Nicholas S. Kern Wolfgang Kerzendorf Eric W. Koch Shankar Kulumani Antony Lee Chun Ly Zhiyuan Ma C. D. MacBride Jakob M. Maljaars Demitri Muna Nicholas A. Murphy Henrik Norman Richard O’Steen Kyle A. Oman Camilla Pacifici S. Pascual J. Pascual-Granado Rohit R. Patil G. I. Perren T. E. Pickering Tushar Rastogi Benjamin R. Roulston Daniel F. Ryan E. S. Rykoff J. Sabater Parikshit Sakurikar J. Salgado

Abstract The Astropy Project supports and fosters the development of open-source openly developed Python packages that provide commonly needed functionality to astronomical community. A key element is core package astropy , which serves as foundation for more specialized projects packages. In this article, we summarize features in recent major release, version 5.0, updates on Project. We then discuss supporting a broader ecosystem interoperable packages, including connections with several...

10.3847/1538-4357/ac7c74 article EN cc-by The Astrophysical Journal 2022-08-01

This paper presents EinsteinPy (version 0.3), a community-developed Python package for gravitational and relativistic astrophysics. is free, easy to use high-level programming language which has seen huge expansion in the number of its users developers recent years. Specifically, lot studies show that Astrophysics general physics increased exponentially. We aim provide very high level abstraction, an interface pleasing user experience. developed keeping mind state theoretical physicist with...

10.48550/arxiv.2005.11288 preprint EN other-oa arXiv (Cornell University) 2020-01-01
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