Limits on the non-thermal emission of the WR-WR system Apep
arXiv:2212.10146 · doi:10.1051/0004-6361/202245332
Abstract
Colliding-wind binaries (CWBs) constitute an emerging class of -ray sources powered by strong, dense winds in massive stellar systems. The most powerful of them are those binaries hosting a Wolf-Rayet (WR) star. Following the recent discovery of Apep -- the closest known Galactic WR--WR binary -- we discuss the non-detection of its putative high-energy emission by the Fermi Large Area Telescope (Fermi-LAT) in this Letter. The limits reported in the GeV regime can be used to set a lower limit on the magnetic field pressure density within the shocked wind-collision region (WCR), and to exclude Apep as a bright gamma-ray emitting binary. Given that this WR--WR system is the most luminous CWB identified until now at radio wavelengths, this result proves unambiguously that non-thermal synchrotron emission is not a suitable identifier for the subset of gamma-ray emitters in this class of particle accelerators. Rather, Apep could be an interesting case of study for magnetic field amplification in shocked stellar winds.
4 pages, 2 figures. Letter accepted in Astronomy and Astrophysics
References in corpus (23)
- Array Programming with NumPy
- Physical Properties of Wolf-Rayet Stars
- The Galactic WN stars: Spectral analyses with line-blanketed model atmospheres versus stellar evolution models with and without rotation
- Radio, X-ray, and gamma-ray Emission Models of the Colliding Winds Binary WR 140
- Dynamical Feedback of Self-generated Magnetic Fields in Cosmic Ray Modified Shocks
- Spatial distribution of Galactic Wolf-Rayet stars and implications for the global population
- Non-thermal emission processes in massive binaries
- γ^2 Velorum: Orbital Solution and Fundamental Parameter Determination with SUSI
- Fermi Large Area Telescope Performance After 10 Years Of Operation
- Non-thermal X-rays from Colliding Wind Shock Acceleration in the Massive Binary Eta Carinae
- R144 revealed as a double-lined spectroscopic binary
- Two Wolf-Rayet stars at the heart of colliding-wind binary Apep
- Particle acceleration and non-thermal emission in colliding-wind binary systems
- 3D magneto-hydrodynamic models of non-thermal photon emission in the binary system Velorum
- The extreme colliding-wind system Apep: resolved imagery of the central binary and dust plume in the infrared
- A new method to perform data/model comparison in Fermi-LAT analysis
- AU-scale radio imaging of the wind collision region in the brightest and most luminous non-thermal colliding wind binary Apep
- Eta Carinae with Fermi-LAT: Two full orbits and the third periastron
- Colliding-wind Binaries with strong magnetic fields
- Radio modelling of the brightest and most luminous non-thermal colliding-wind binary Apep
- The high-energy emission from HD~93129A near periastron
- The non-thermal emission from the colliding-wind binary Apep
- Colliding-Wind Binaries as a Source of TeV Cosmic Rays