SH010-0006
SunPy 2.0: the community-developed open-source solar data analysis environment for Python
Tuesday, 8 December 2020
Poster
Sophie A. Murray1, Will Barnes2, Monica Bobra3, Steven Christe4, Nabil Freij5, Laura Hayes6, Jack Ireland7, Stuart Mumford8, David Pérez-Suárez9, Daniel Ryan4, Albert Y Shih4, Prateek Chanda10, Russell Hewett11, Vincent K Hughitt12, Andrew Hill13, Kaustubh Hiware14, Andrew Inglis15, Michael S Kirk16, Sudarshan Konge17, James Paul Mason18, Shane Maloney19, Asish Panda20, Jongyeob Park21, Tiago M. D. Pereira22, Kevin Reardon23, Sabrina L Savage24, Brigitta Sipocz25, David Stansby26, Yash Jain14, Garrison Taylor27, Tannmay Yadav14, Hoang Trung Kien28, Bin Chen29 and Kolja Glogowski30, (1)Trinity College Dublin, School of Physics, Dublin, Ireland, (2)Lockheed Martin Solar and Astrophysics Laboratory, Palo Alto, United States, (3)Stanford-HEPL Solar Physics, Stanford, CA, United States, (4)NASA GSFC, Solar Physics Lab, Greenbelt, MD, United States, (5)Universitat de les Illes Balears, Physics, Palma, Spain, (6)NASA Postdoctoral Program Fellow, Greenbelt, MD, United States, (7)ADNET Systems Inc. Greenbelt, Greenbelt, MD, United States, (8)University of Sheffield, SP2RC, School of Mathematics and Statistics, Sheffield, United Kingdom, (9)University College London, Mullard Space Science Laboratory, Dorking, United Kingdom, (10)Indian Institute of Engineering Science and Technology, Shibpur, West Bengal, India, (11)Total SA, Houston, TX, United States, (12)NASA/ADNET, Greenbelt, MD, United States, (13)Oklahoma Baptist University, Shawnee, OK, United States, (14)Indian Institute of Technology Kharagpur, Kharagpur, India, (15)Catholic University of America, Washington, DC, United States, (16)Atmospheric and Space Technology Research Associates, LLC, Boulder, CO, United States, (17)Microsoft India Development Center, Bengaluru, India, (18)University of Colorado Boulder, LASP, Boulder, CO, United States, (19)Trinity College Dublin, Dublin, Ireland, (20)Google Summer of Code 2014, Washington, United States, (21)KASI Korea Astronomy and Space Science Institute, Daejeon, South Korea, (22)University of Oslo, Oslo, Norway, (23)National Solar Observatory, Tucson, AZ, United States, (24)NASA Marshall Space Flght Ctr, Madison, AL, United States, (25)DIRAC Institute, Department of Astronomy, University of Washington, Seattle, WA, United States, (26)Imperial College London, London, SW7, United Kingdom, (27)Harvard-Smithsonian Center for Astrophysics, Cambridge, United States, (28)National University of Singapore, Singapore, Singapore, (29)New Jersey Institute of Technology, Center for Solar-Terrestrial Research, Edison, NJ, United States, (30)University of Freiburg, Freiberg, Germany
Abstract:
The SunPy project facilitates and promotes the use and development of several community-led, free, and open-source data analysis software packages for solar physics based on the scientific Python environment. The project achieves this goal by developing and maintaining the SunPy core package and supporting an ecosystem of affiliated packages. The SunPy community is pleased to announce the release of version 2.0! Some highlights for this release include updates to the Fido data search and retrieval tool, various fixes to the sunpy.map sub package, and integration of differential rotation into the sunpy.coordinates framework. Also new in SunPy 2.0 is the aiapy package for analyzing data from SDO/AIA, which replaces aiaprep. Learn more about how to install and use the publicly available code at sunpy.org, as well as information about how to get involved with the community!