Accès ouvert déclaré
2026
article
Citizen CATE 2024: Extending Totality During the 8 April 2024 Total Solar Eclipse with a Distributed Network of Community Participants
Sarah A. Kovac, Amir Caspi, Daniel B. Seaton, Daniel W. Zietlow, P. Bryans, J. Burkepile, Sarah J. Davis, C. E. DeForest, D. Elmore, Sanjay Gosain, Rebecca Haacker, Marcus Hughes, Jason Jackiewicz, Viliam Klein, Derek Lamb, V. Martı́nez Pillet, Evy McUmber, Ritesh Patel, K. Reardon, Anna Tosolini, Andrei Ursache, P. A. Yanamandra-Fisher, John P. Carini, Charles H. Gardner, Shawn A. Laatsch, P. H. Reiff, N. L. Saini, Rachael Weir, Kira F. Baasch, Jacquelyn Bellefontaine, Ryan J. Ferko, L. Ferrer, Margaret Hill, Jennifer Miller, B. W. Murphy, M. Percy, A. W. Shaw, Erik Stinnett, E Thompson, Allen Allison, Angelica A. Alvis, Lucinda J. Alvis, A. Angeles, R.W. Benedict, Amelia Bettati, Abbie Bevill, Katherine Wolfson, Iris P. Borunda, Mario F. Borunda, Daniel Brookshier, M Brown, Fred Bruenjes, Lisa Bunselmeier, Brian Burke, T D Copeland, Adrian J. Corter, Lawson L. Corter, Michael J. Corter, Theresa N. Costilow, Lori E. Cypert, Derrion Crouch-Bond, B. M. Csathó, Clayton C. Cundiff, Stella S. Cundiff, Darrell DeMotta, Hannah L. Dirlam, Nathan Dodson, Jennifer Dudley-Winter, Justin Dulyanunt, J.R. Duncan, Lizabeth D. Eason, Terry Eason, J. L. Edwards, Jaylynn N. Eisenhour, Ogheneovo N. Erho, Ethel R. Fleming, Stephanie D. Frosch, Sahir Gagan, Joshua D. Gamble, Caitlyn L. Geisheimer, A.S.Hovan George, Treva D. Gough, John Gowing, Robert Greeson, Julie Griffin, Austin S. Hailey, Katrina B. Halasa, Melissa Hentnik, Robert Hentnik, Mark Herman, J. Michael Henthorn, Banning's Seed Nursery House., T. Howe, Brianna Isola, Mark A. Iwen, Richard O. Johnson, Katy R. Kiser, Michael K. Koomson, Katrina de Lange, Kyle Lawrence Leathers, Michael H. Lee, Heather Liptak, Logan Liptak, Michael A. Liptak, April Luehmann, Kristen Lusk, Ian A. Mannings, Christopher J. Martin, Jamie Martin, E. Truman Mays, Edward M. McHenry, Tyler J. Metivier, Quinn W. Miller, Carlos Miranda, David L. Mitchell, L. Montgomery, Christopher Morse, Ira S. Morse, Raman Mukundan, P. Murphy, Nicarao J. Narvaez, Ahmed Nasreldin, Thomas Neel, Ellianna Nestlerode, Adam Z. Neuville, Brian A. Neuville, Allison Newberg, Makenna F. Nickens, Sining Niu, Luís Otero, Ivan Parmuzin, C M Rowland Payne, H. Westley Phillips, Elizabeth R. Prinkey, Kwesi Akumenyi Quagraine, Wesley J. Reddish, Stephen Kyle Rimler, Carlyn S. Rocazella, T. E. Rodgers, John F. Rusho, Sophia Saucerman, James Scoville, Martin Seifert, Michael H. Seile, Thomas G. Skirko, David C. Smith, E. Snode-Brenneman, Aidan Sweets, Deborah S. Teuscher, Owen Totten, Stephanie Totten, Corina Ursache, Yolanda Vasquez, R. Anthony Vincent, W. Webb, Roderick M. Weinschenk, Sedrick Weinschenk, Philip Williams, John A. Zakelj
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76Institutions déclarées
3Pays d’affiliation déclarés
Rattachement africain : us, gb, fr.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
The Citizen CATE 2024 next-generation experiment placed 43 identical telescope and camera setups along the path of totality during the total solar eclipse (TSE) on 8 April 2024 to capture a 60-minute movie of the inner and middle solar corona in polarized visible light. The 2024 TSE path covered a large geographic swath of North America and we recruited and trained 36 teams of community participants (“citizen scientists”) representative of the various communities along the path of totality. Afterwards, these teams retained the equipment in their communities for on-going education and public engagement activities. Participants ranged from students (K12, undergraduate, and graduate), educators, and adult learners to amateur and professional astronomers. In addition to equipment for their communities, CATE 2024 teams received hands-on telescope training, educational and learning materials, and instruction on data analysis techniques. CATE 2024 used high-cadence, high-dynamic-range (HDR) polarimetric observations of the solar corona to characterize the physical processes that shape its heating, structure, and evolution at scales and sensitivities that cannot be studied outside of a TSE. Conventional eclipse observations do not span sufficient time to capture changing coronal topology, but the extended observation from CATE 2024 does. Analysis of the fully calibrated dataset will provide deeper insight and understanding into these critical physical processes. We present an overview of the CATE 2024 project, including how we engaged local communities along the path of totality, and the first look at CATE 2024 data products from the 2024 TSE.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Citizen CATE 2024: Extending Totality During the 8 April 2024 Total Solar Eclipse with a Distributed Network of Community Participants
- Date Crossref
- 01/01/2026
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Solar and Space Plasma DynamicsStellar, planetary, and galactic studiesNatural Products and Applications