Polarimeter to Unify the Corona and Heliosphere (PUNCH)
Abstract
The Polarimeter to Unify the Corona and Heliosphere (PUNCH) mission is a NASA Small Explorer to determine the cross-scale processes that unify the solar corona and heliosphere. PUNCH has two science objectives: (1) understand how coronal structures become the ambient solar wind, and (2) understand the dynamic evolution of transient structures, such as coronal mass ejections, in the young solar wind. To address these objectives, PUNCH uses a constellation of four small spacecraft in Sun-synchronous low Earth orbit, to collect linearly polarized images of the K corona and young solar wind. The four spacecraft each carry one visible-light imager in a 1+3 configuration: a single Narrow Field Imager solar coronagraph captures images of the outer corona at all position angles, and at solar elongations from 1.5 degrees (6 R) to 8 degrees (32 R); and three separate Wide Field Imager heliospheric imagers together capture views of the entire inner solar system, at solar elongations from 3 degrees (12 R) to 45 degrees (180 R) from the Sun. PUNCH images include linear-polarization data, to enable inferring the three-dimensional structure of visible features without stereoscopy. The instruments are matched in wavelength passband, support overlapping instantaneous fields of view, and are operated synchronously, to act as a single ``virtual instrument'' with a 90 degree wide field of view, centered on the Sun. PUNCH launched in March of 2025 and began science operations in June of 2025. PUNCH has an open data policy with no proprietary period, and PUNCH Science Team Meetings are open to all.
Keywords
Cite
@article{arxiv.2509.15131,
title = {Polarimeter to Unify the Corona and Heliosphere (PUNCH)},
author = {Craig E. DeForest and Sarah E. Gibson and Ronnie Killough and Nick R. Waltham and Matt N. Beasley and Robin C. Colaninno and Glenn T. Laurent and Daniel B. Seaton and J. Marcus Hughes and Madhulika Guhathakurta and Nicholeen M. Viall and Raphael Attie and Dipankar Banerjee and Luke Barnard and Doug A. Biesecker and Mario M. Bisi and Volker Bothmer and Antonina Brody and Joan Burkepile and Iver H. Cairns and Jennifer L. Campbell and Traci Case and Amir Caspi and David Cheney and Rohit Chhiber and Matthew J. Clapp and Steven R. Cranmer and Jackie A. Davies and Curt A. de Koning and Mihir I. Desai and Heather A. Elliott and Samaiyah Farid and Bea Gallardo-Lacourt and Chris Gilly and Caden Gobat and Mary H. Hanson and Richard A. Harrison and Donald M. Hassler and Chase Henley and Alan M. Henry and Russell A. Howard and Bernard V. Jackson and Samuel Jones and Don Kolinski and Derek A. Lamb and Florine Lehtinen and Chris Lowder and Anna Malanushenko and William H. Matthaeus and David J. McComas and Jacob McGee and Huw Morgan and Divya Oberoi and Dusan Odstrcil and Chris Parmenter and Ritesh Patel and Francesco Pecora and Steve Persyn and Victor J. Pizzo and Simon P. Plunkett and Elena Provornikova and Nour Eddine Raouafi and Jillian A. Redfern and Alexis P. Rouillard and Kelly D. Smith and Keith B. Smith and Zachary S. Talpas and S. James Tappin and Arnaud Thernisien and Barbara J. Thompson and Samuel Van Kooten and Kevin J. Walsh and David F. Webb and William L. Wells and Matthew J. West and Zachary Wiens and Yan Yang},
journal= {arXiv preprint arXiv:2509.15131},
year = {2026}
}
Comments
As accepted by Solar Physics journal; substantially similar (but not identical) to the article as it will appear in the journal