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A Systematic Search for MeV–GeV Pulsar Wind Nebulae without Gamma-Ray Detected Pulsars

  • Fermi LAT Collaboration
  • Center for Cosmology and Particle Physics Phenomenology
  • University of Southern Denmark
  • INFN Sezione di Perugia
  • Department of Physics and Astronomy
  • Clemson University
  • University of Pisa
  • CEA/UVSQ/CNRS
  • INFN Sezione di Bari
  • Università di Trento
  • Dpto. Astrofísica
  • Research Unit; CIBERNED and Universidad de La Laguna
  • Istituto Nazionale di Fisica Nucleare, Sezione di Pisa
  • Politecnico di Bari
  • INFN Sezione di Torino
  • Dipartimento di Fisica
  • University of Turin
  • Kavli Institute for Particle Astrophysics and Cosmology
  • INAF Istituto di Astrofisica Spaziale e Fisica Cosmica, Milan
  • INFN Roma Tor Vergata
  • Space Science Data Center
  • Science and Research Directorate
  • Dipartimento di Fisica
  • University of Perugia
  • Center for Astrophysics | Harvard & Smithsonian
  • Astrophysics Science Division
  • NASA Goddard Space Flight Center
  • Friedrich-Alexander University (FAU) Erlangen-Nürnberg and Universitätsklinikum Erlangen
  • INAF Istituto di Radioastronomia
  • Grupo de Altas Energías
  • Complutense University
  • Department of Physical Science
  • Hiroshima University
  • University of Rome “Tor Vergata”
  • Max-Planck-Institut für Physik
  • UMR 5797
  • Department of Physics
  • George Washington University
  • MST-8, Los Alamos National Laboratory

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

3 Citations (Scopus)

Résumé

An increasing number of pulsar wind nebulae (PWNe) are being identified in the TeV band by ground-based Imaging Air Cherenkov Telescopes such that they constitute the dominant source class of Galactic TeV emitters. However, MeV–GeV PWN counterparts are still largely lacking. To date, only a dozen PWNe are identified by the Fermi–Large Area Telescope (LAT) in the MeV–GeV band. Most PWNe are located along the Galactic plane embedded within the prominent, diffuse Galactic γ-ray emission, which makes these sources difficult to disentangle from the bright diffuse background. We present a systematic search for γ-ray counterparts to known PWNe in the 300 MeV–2 TeV energy band using the Fermi–LAT. We target the locations of previously identified PWNe that lack detected Fermi–LAT pulsars to minimize associated pulsar contamination. The sample includes six previously identified Fermi PWNe and eight Fermi–LAT sources associated with PWNe. We report the analysis of 58 regions of interest and classify Fermi–LAT detected sources as either a likely PWN or a candidate PWN counterpart based on their morphological and spectral characteristics across the broadband spectrum. There are nine unidentified Fermi–LAT sources that we consider as likely PWN counterparts, which, if confirmed to be PWNe, would greatly increase the PWN population detected by the Fermi–LAT from 12 to 21. The remaining Fermi–LAT detected sources are considered weaker PWN candidates. A second approach in the systematic search for γ-ray emitting PWNe will involve studying the off-pulse phases of Fermi–LAT detected pulsars for the presence of an obscured PWN and will be reported in a subsequent paper.

langue originaleAnglais
Numéro d'article110
journalAstrophysical Journal
Volume989
Numéro de publication1
Les DOIs
étatPublié - 10 août 2025

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