Deciphering the gamma-ray emission in the Cygnus region
arXiv:2508.21644 · doi:10.1051/0004-6361/202555531
Abstract
The Cygnus region is a vast star-forming complex harbouring a population of powerful objects, including massive star clusters and associations, Wolf-Rayet stars, pulsars, and supernova remnants. The multi-wavelength picture is far from understood, in particular the recent LHAASO detection of multi-degree scale diffuse gamma-ray emission up to PeV energies. We aim to model the broadband gamma-ray data, discriminating plausible scenarios amongst all candidate accelerators. We consider in particular relic hadronic emission from a supernova remnant expanding in a low-density environment and inverse Compton emission from stellar-wind termination shocks in the Cygnus OB2 stellar association. We first estimate the maximum particle energy from a 3D hydrodynamical simulation of the supernova remnant scenario. The transport equation is then solved numerically to determine the radial distribution of non-thermal protons and electrons. In order to compute synthetic gamma-ray spectra and emission maps, we develop a 3D model of the gas distribution. This includes, firstly, a HI component with a low-density superbubble around Cygnus OB2 and, secondly, molecular clouds lying at the edge of the superbubble and in the foreground. We find that a powerful, ~50 kyr-old supernova remnant can account for both the morphology and spectrum from 10 TeV-PeV. At PeV energies, the microquasar Cygnus X-3 and diffuse Galactic cosmic rays might also contribute to the flux. Below about 10 TeV, hadronic models are incompatible with the expected existence of a superbubble centred on Cygnus OB2. Instead, the spectrum is well fitted with inverse Compton emission from electrons accelerated at stellar-wind termination shocks in Cygnus OB2 in line with existing multi-wavelength limits.
accepted to A&A
References in corpus (35)
- Painting a portrait of the Galactic disc with its stellar clusters
- Parametrization of gamma-ray production cross-sections for pp interactions in a broad proton energy range from the kinematic threshold to PeV energies
- The MiMeS survey of magnetism in massive stars: Magnetic analysis of the O-type stars
- Discovery of TeV Gamma-Ray Emission from the Cygnus Region of the Galaxy
- A radiation transfer model for the Milky-Way: I. Radiation fields and application to High Energy Astrophysics
- The Massive Star Population of Cygnus OB2
- Particle acceleration in winds of star clusters
- Spatial distribution of Galactic Wolf-Rayet stars and implications for the global population
- The Galactic WN stars revisited. Impact of Gaia distances on fundamental stellar parameters
- HAWC observations of the acceleration of very-high-energy cosmic rays in the Cygnus Cocoon
- Identification of the TeV Gamma-ray Source ARGO J2031+4157 with the Cygnus Cocoon
- A lower bound on intergalactic magnetic fields from time variability of 1ES 0229+200 from MAGIC and Fermi/LAT observations
- An Ultrahigh-energy -ray Bubble Powered by a Super PeVatron
- Diffusion of cosmic rays in MHD turbulence with magnetic mirrors
- Cosmic ray production in superbubbles
- Three-Dimensional Dynamical Instabilities in Galactic Ionization Fronts
- Revisiting the mass of open clusters with \emph{Gaia} data
- Hoki: Making BPASS accessible through Python
- Massive star cluster origin for the galactic cosmic ray population at very-high energies
- Diffuse Emission of Galactic High-Energy Neutrinos from a Global Fit of Cosmic Rays
- Understanding the TeV -ray emission surrounding the young massive star cluster Westerlund 1
- Gamma-ray Observation of the Cygnus Region in the 100 TeV Energy Region
- Unveiling the formation of the massive DR21 ridge
- Multiple emission components in the Cygnus cocoon detected from Fermi-LAT observations
- Modeling of GeV-TeV gamma-ray emission of Cygnus Cocoon
- Observation of the -ray Emission from W43 with LHAASO
- Very-high-energy -ray emission from young massive star clusters in the Large Magellanic Cloud
- Core-collapse supernova inside the core of a young massive star cluster: 3D MHD simulations
- A HaloSat Analysis of the Cygnus Superbubble
- HI Self-absorption toward the Cygnus X North: From Atomic Filament to Molecular Filament
- Stellar-wind feedback and magnetic fields around young compact star clusters: 3D MHD simulations
- Cosmic ray transport and acceleration with magnetic mirroring
- Probing the origin of cosmic rays in Cygnus Cocoon using ultrahigh-energy gamma-ray and neutrino observations
- High-Resolution Radio Study of the Dragonfly Nebula
- Limits on Leptonic TeV Emission from the Cygnus Cocoon with Swift-XRT