Evidence for non-thermal X-ray emission from the double WR colliding-wind binary Apep
arXiv:2302.08170 · doi:10.1051/0004-6361/202245505
Abstract
Context: Massive colliding-wind binaries (CWBs) can be non-thermal sources. The emission produced in their wind-collision region (WCR) encodes information of both the shocks properties and the relativistic electrons accelerated in them. The recently discovered system Apep, a unique massive system hosting two Wolf-Rayet stars, is the most powerful synchrotron radio emitter among the known CWBs, being an exciting candidate to investigate the non-thermal processes associated with stellar wind shocks. Aims: We intend to break the degeneracy between the relativistic particle population and the magnetic field strength in the WCR of Apep by probing its hard X-ray spectrum, where inverse-Compton (IC) emission is expected to dominate. Methods: We observe Apep with NuSTAR for 60 ks and combine this with a re-analysis of a deep archival XMM-Newton observation to better constrain the X-ray spectrum. We use a non-thermal emission model to derive physical parameters from the results. Results: We detect hard X-ray emission consistent with a power-law component. This is compatible with IC emission produced in the WCR for a magnetic field of 100-160 mG and a fraction of ~1.5e-4 of the total wind kinetic power being converted into relativistic electron acceleration. Conclusions: This is the first time that the non-thermal emission from a CWB is detected both in radio and high energies. This allows us to derive the most robust constraints of the particle acceleration efficiency and magnetic field intensity in a CWB so far, reducing the typical uncertainty of a few orders of magnitude to just within a factor of two. This constitutes an important step forward in our characterisation of the physical properties of CWBs.
12 pages, 6 figures, accepted for publication in A&A
References in corpus (18)
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- Physical Properties of Wolf-Rayet Stars
- NuSTAR Observations of the Bullet Cluster: Constraints on Inverse Compton Emission
- IACHEC Cross-Calibration of Chandra, NuSTAR, Swift, Suzaku, and XMM-Newton with 3C 273 and PKS 2155-304
- The Galactic WN stars revisited. Impact of Gaia distances on fundamental stellar parameters
- Detection of Gamma-ray Emission from the Eta-Carinae Region
- Non-thermal X-rays from Colliding Wind Shock Acceleration in the Massive Binary Eta Carinae
- The first full orbit of Eta Carinae seen by Fermi
- On the non-thermal electron-to-proton ratio at cosmic acceleration sites
- Two Wolf-Rayet stars at the heart of colliding-wind binary Apep
- Particle acceleration and non-thermal emission in colliding-wind binary systems
- 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
- 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
- Non-thermal emission in hyper-velocity and semi-relativistic stars
- Limits on the non-thermal emission of the WR-WR system Apep
Cited by in corpus (4)
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- Probing cosmic ray escape from η Carinae
- Chandra X-ray Measurement of Heavy Element Abundances of Wolf-Rayet Stars in the Galactic Center
- Radio study of the colliding wind binary HD93129A near periastron and its surroundings