Computational Astrophysics, Data Science & AI/ML in Astronomy: A Perspective from Indian Community
Prateek Sharma, Bhargav Vaidya, Yogesh Wadadekar, Jasjeet Bagla,, Piyali Chatterjee, Shravan Hanasoge, Prayush Kumar, Dipanjan Mukherjee, Ninan, Sajeeth Philip, Nishant Singh

TL;DR
This paper emphasizes the importance of integrating high-performance computing, big data, and AI/ML in Indian astronomy to enhance research capabilities and maintain global competitiveness, despite resource limitations.
Contribution
It highlights the need for a national framework in India to support computational astrophysics and data science through resource access, proposal assessment, and fostering collaboration.
Findings
Indian community has made significant contributions despite limited resources.
Establishing a national computational framework can boost research quality.
AI/ML and HPC are crucial for future astrophysics discoveries.
Abstract
In contemporary astronomy and astrophysics (A&A), the integration of high-performance computing (HPC), big data analytics, and artificial intelligence/machine learning (AI/ML) has become essential for advancing research across a wide range of scientific domains. These tools are playing an increasingly pivotal role in accelerating discoveries, simulating complex astrophysical phenomena, and analyzing vast amounts of observational data. For India to maintain and enhance its competitive edge in the global landscape of computational astrophysics and data science, it is crucial for the Indian A&A community to fully embrace these transformative technologies. Despite limited resources, the expanding Indian community has already made significant scientific contributions. However, to remain globally competitive in the coming years, it is vital to establish a robust national framework that…
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Taxonomy
TopicsGenetics, Bioinformatics, and Biomedical Research
