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Observations of the Polarized Solar Corona During the Annular Eclipse of 14 October 2023

  • Daniel B. Seaton
  • , Amir Caspi
  • , Nathalia Alzate
  • , Sarah J. Davis
  • , Alec R. DeForest
  • , Craig E. DeForest
  • , Nicholas F. Erickson
  • , Sarah A. Kovac
  • , Ritesh Patel
  • , Steven N. Osterman
  • , Anna Tosolini
  • , Samuel J. Van Kooten
  • , Matthew J. West
  • Southwest Research Institute
  • NASA Goddard Space Flight Center
  • Adnet Systems
  • Independent Researcher
  • Independent Researcher

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

We present results of a dual eclipse expedition to observe the solar corona from two sites during the annular solar eclipse of 14 October 2023 using a novel coronagraph designed to be accessible for amateurs and students to build and deploy. The coronagraph (CATEcor) builds on the standardized eclipse observing equipment developed for the Citizen CATE 2024 experiment. The observing sites were selected for likelihood of clear observations, for historic relevance (near the Climax site in the Colorado Rocky Mountains), and for centrality to the annular eclipse path (atop Sandia Peak above Albuquerque, New Mexico). The novel portion of CATEcor is an external occulter assembly that slips over the front of a conventional dioptric telescope, forming a shaded-truss externally occulted coronagraph. CATEcor is specifically designed to be easily constructed in a garage or “makerspace” environment. We successfully observed some bright features in the solar corona to an altitude of approximately 2.25 R during the annular phases of the eclipse. Future improvements to the design, in progress now, will reduce both stray light and image artifacts; our objective is to develop a design that can be operated successfully by amateur astronomers at sufficient altitude even without the darkened skies of a partial or annular eclipse.

Original languageEnglish
Article number79
JournalSolar Physics
Volume299
Issue number6
DOIs
StatePublished - Jun 2024
Externally publishedYes

Keywords

  • Solar eclipse
  • Solar instrumentation
  • Solar K corona

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