HESS J0632+057: hydrodynamics and nonthermal emission
arXiv:1708.00066 · doi:10.1093/mnrasl/slx124
Abstract
HESS J0632+057 is an eccentric gamma-ray Be binary that produces non-thermal radio, X-rays, GeV, and very high-energy gamma rays. The non-thermal emission of HESS J0632+057 is modulated with the orbital period, with a dominant maximum before apastron passage. The nature of the compact object in HESS J0632+057 is not known, although it has been proposed to be a young pulsar as in PSR B1259-63, the only gamma-ray emitting high-mass binary known to host a non-accreting pulsar. In this Letter, we present hydrodynamical simulations of HESS J0632+057 in the context of a pulsar and a stellar wind interacting in an eccentric binary, and propose a scenario for the non-thermal phenomenology of the source. In this scenario, the non-thermal activity before and around apastron is linked to the accumulation of non-thermal particles in the vicinity of the binary, and the sudden drop of the emission before apastron is produced by the disruption of the two-wind interaction structure, allowing these particles to efficiently escape. In addition to providing a framework to explain the non-thermal phenomenology of the source, this scenario predicts extended, moving X-ray emitting structures similar to those observed in PSR B1259-63.
6 pages, 5 figures, accepted by MNRAS Letters
References in corpus (5)
- PLUTO: a Numerical Code for Computational Astrophysics
- Discovery of a point-like very-high-energy gamma-ray source in Monoceros
- HESS J0632+057 : A new gamma-ray binary?
- Orbital evolution of colliding star and pulsar winds in 2D and 3D; effects of: dimensionality, EoS, resolution, and grid size
- Mass of the compact object in the Be/gamma-ray binaries LSI+61303 and MWC 148
Cited by in corpus (4)
- Modelling the interaction between relativistic and non-relativistic winds in binary pulsar systems: strong magnetization of the pulsar wind
- Investigation of the broadband emission of the gamma-ray binary HESS J0632+057 using an intrabinary shock model
- The major role of eccentricity in the evolution of colliding pulsar-stellar winds
- Relativistic astrospheres of gamma-ray binaries: modeling of non-thermal processes