The high-energy emission from HD~93129A near periastron
arXiv:2004.10032 · doi:10.1093/mnras/staa1156
Abstract
We conducted an observational campaign towards one of the most massive and luminous colliding wind binaries in the Galaxy, HD~93129A, close to its periastron passage in 2018. During this time the source was predicted to be in its maximum of high-energy emission. Here we present our data analysis from the X-ray satellites \textit{Chandra} and \textit{NuSTAR} and the -ray satellite \textit{AGILE}. High-energy emission coincident with HD~93129A was detected in the X-ray band up to 18~keV, whereas in the -ray band only upper limits were obtained. We interpret the derived fluxes using a non-thermal radiative model for the wind-collision region. We establish a conservative upper limit for the fraction of the wind kinetic power that is converted into relativistic electron acceleration, . In addition, we set a lower limit for the magnetic field in the wind-collision region as ~G. We also argue a putative interpretation of the emission from which we estimate and ~G. We conclude that multi-wavelength, dedicated observing campaigns during carefully selected epochs are a powerful tool for characterising the relativistic particle content and magnetic field intensity in colliding wind binaries.
11 pages, 10 figures, accepted for publication in MNRAS
References in corpus (10)
- Dynamical Simulations of Magnetically Channeled Line-Driven Stellar Winds: III. Angular Momentum Loss and Rotational Spindown
- Radio, X-ray, and gamma-ray Emission Models of the Colliding Winds Binary WR 140
- 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
- A close encounter of the massive kind
- On the non-thermal electron-to-proton ratio at cosmic acceleration sites
- A radio-map of the colliding winds in the very massive binary system HD 93129A
- Investigating Particle Acceleration in the Wolf-Rayet Bubble G2.4+1.4
- Investigation of the WR 11 field at decimeter wavelengths
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- The non-thermal emission from the colliding-wind binary Apep
- Radio study of the colliding wind binary HD93129A near periastron and its surroundings
- Limits on the non-thermal emission of the WR-WR system Apep