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The salamander: a case study of the magnetic field and peculiar morphology of G309.8–2.6 through radio polarimetry

  • Wenhui Jing
  • , Jennifer L. West
  • , Xiaohui Sun
  • , Roland Kothes
  • , Isabel Sander
  • , Samar Safi-Harb
  • , Denis Leahy
  • , B. M. Gaensler
  • , Xianghua Li
  • , Brianna Ball
  • , Craig Anderson
  • , W. Becker
  • , Miroslav D. Filipović
  • , Andrew M. Hopkins
  • , Yik Ki Ma
  • , Naomi McClure-Griffiths
  • , Syed Faisal ur Rahman
  • , Cameron L. Van Eck
  • , Jacco Th Van Loon
  • , Jayde Willingham
  • Yunnan University
  • National Research Council of Canada
  • University of Tasmania
  • University of Manitoba
  • University of Calgary
  • University of California at Santa Cruz
  • University of Toronto
  • University of Alberta
  • Australian National University
  • Max Planck Institute for Extraterrestrial Physics
  • Max Planck Institute for Radio Astronomy
  • Macquarie University
  • Lahore University of Management Sciences
  • NED University of Engineering and Technology
  • Keele University

Research output: Contribution to journalArticlepeer-review

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Abstract

Studying the interaction between core-collapse supernova remnants (SNRs) and their surrounding environments is essential to understanding the mechanism for energy transfer to the interstellar medium and the intrinsic physical properties of these remnants. In this paper, we focus on G309.8−2.6. Our new observations reveal that this object includes an SNR shell with a relic pulsar wind nebula that extends well beyond the emission that has been previously observed in X-rays. We present new radio continuum and polarization images of G309.8−2.6 from the Evolutionary Map of the Universe and Polarization Sky Survey of the Universe’s Magnetism surveys with the Australian Square Kilometre Array Pathfinder. The images reveal the complex and peculiar morphology of G309.8−2.6. The linear polarization displays an atypical S-shaped morphology and a highly ordered magnetic field. The rotation measure (RM) map shows a large-scale gradient or possible sign reversal, depending on the foreground RM. We reprocessed archival X-ray observations from Chandra and eROSITA, and retrieved archival Hα and infrared observations. We performed a joint analysis of the multiwavelength data and proposed scenarios to explain the unusual shape. Our results place new constraints on the magnetic field of G309.8−2.6, including its environment, and demonstrate the power of polarization observations in probing the properties of SNRs.

Original languageEnglish
Article number9
Number of pages18
JournalAstrophysical Journal
Volume1001
Issue number1
DOIs
Publication statusPublished - 10 Apr 2026

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