GeV emission in the region of Vela: a new view of the supernova remnant
arXiv:2604.16768 · doi:10.1051/0004-6361/202557331
Abstract
The Vela supernova remnant (SNR), G263.9-3.3, and its pulsar wind nebula (PWN), Vela X, is one of the closest such systems, and it has been studied using observations across the electromagnetic spectrum. SNRs are known sources of gamma rays with energies from GeV to the TeV range. In the GeV band, a cluster of cataloged unidentified Fermi-LAT point sources are found across the large angular extension of the Vela SNR. We aim to search for a high-energy signature associated to the SNR. We applied two independent machine learning algorithms to classify unidentified point sources in the Vela region by comparing their properties to those of known populations of Fermi pulsars and active galactic nuclei. We analyzed LAT data and modeled the spectrum of any emission attributable to Vela using leptonic and hadronic processes typical of SNRs. We find that most of the "point sources" cataloged within the extent of Vela do not share characteristics with those of the two most common Fermi point-like source populations and that even after the emission attributed to these "point sources" is subtracted, considerable residual emission is seen throughout Vela. Morphologically, most of the GeV emission is found within the shell of the SNR. We conclude that the majority of the cataloged point sources are likely spurious, and the GeV gamma rays come from an extended source, which we argue is the counterpart of the Vela SNR. Adopting a simple morphology given by a uniform disk for the emission the resulting extension is 6.5 deg. The northeastern portion of G263.9-3.3, where the ambient density is thought to be higher, is brighter in gamma rays than the south and west. The spectrum of the emission is best fit with a hadronic model. These facts make the hadronic origin for the gamma rays more likely.
9 pages, 3 figures. To appear in A&A. Comments welcome!
References in corpus (20)
- TEMPO2, a new pulsar timing package. I: Overview
- Incremental Fermi Large Area Telescope Fourth Source Catalog
- Parametrization of gamma-ray production cross-sections for pp interactions in a broad proton energy range from the kinematic threshold to PeV energies
- First detection of a VHE gamma-ray spectral maximum from a Cosmic source: H.E.S.S. discovery of the Vela X nebula
- The contribution of winds of star clusters to the Galactic cosmic-ray population
- Classification of Blazar Candidates of Uncertain Type from the Fermi LAT 8-Year Source Catalog with an Artificial Neural Network
- Classification of Fermi-LAT sources with deep learning using energy and time spectra
- A detailed look at the thermal and non-thermal X-ray emission from the Vela supernova remnant with SRG/eROSITA
- Gamma-ray detection of newly discovered Ancora SNR: G288.8-6.3
- A new method to perform data/model comparison in Fermi-LAT analysis
- Machine learning methods for constructing probabilistic Fermi-LAT catalogs
- Classifications of Fermi-LAT unassociated sources in multiple machine learning methods
- Multi-class classification of Fermi-LAT sources with hierarchical class definition
- G279.0+1.1: a new extended source of high-energy gamma rays
- Probing the origin of 4FGL J0822.8-4207: cosmic ray illumination from the SNR Puppis A and the Herbig-Haro object HH219
- Fermi LAT AGN classification using supervised machine learning
- Non-thermal GeV emission from the Nereides nebula: confirming the nature of the supernova remnant G107.7-5.1
- The Vela pulsar and its pulsar wind nebula Vela-X using 13 years of Fermi-LAT Observations
- Chandra X-ray Observatory Observations of 13 Fermi LAT Sources
- Evidence for protons accelerated and escaped from the Puppis A region using \textit{Fermi}-LAT observations