Simulations of stellar/pulsar wind interaction along one full orbit
arXiv:1203.5528 · doi:10.1051/0004-6361/201219251
Abstract
The winds from a non-accreting pulsar and a massive star in a binary system collide forming a bow-shaped shock structure. The Coriolis force induced by orbital motion deflects the shocked flows, strongly affecting their dynamics. We study the evolution of the shocked stellar and pulsar winds on scales in which the orbital motion is important. Potential sites of non-thermal activity are investigated. Relativistic hydrodynamical simulations in two dimensions, performed with the code PLUTO and using the adaptive mesh refinement technique, are used to model interacting stellar and pulsar winds on scales ~80 times the distance between the stars. The hydrodynamical results suggest the suitable locations of sites for particle acceleration and non-thermal emission. In addition to the shock formed towards the star, the shocked and unshocked components of the pulsar wind flowing away from the star terminate by means of additional strong shocks produced by the orbital motion. Strong instabilities lead to the development of turbulence and an effective two-wind mixing in both the leading and trailing sides of the interaction structure, which starts to merge with itself after one orbit. The adopted moderate pulsar-wind Lorentz factor already provides a good qualitative description of the phenomena involved in high-mass binaries with pulsars, and can capture important physical effects that would not appear in non-relativistic treatments. Simulations show that shocks, instabilities, and mass-loading yield efficient mass, momentum, and energy exchanges between the pulsar and the stellar winds. This renders a rapid increase in the entropy of the shocked structure, which will likely be disrupted on scales beyond the simulated ones. Several sites of particle acceleration and low- and high-energy emission can be identified. Doppler boosting will have significant and complex effects on radiation.
8 pages, 11 figures, Astronomy and Astrophysics, in press, minor changes after acceptance
References in corpus (16)
- PLUTO: a Numerical Code for Computational Astrophysics
- Gamma-ray binaries: pulsars in disguise ?
- Discovery of High-Energy Gamma-Ray Emission from the Binary System PSR B1259-63/LS 2883 Around Periastron with Fermi
- Understanding the Very High-Energy Emission from Microquasars
- Modeling interaction of relativistic and nonrelativistic winds in binary system PSR 1259-63/SS2883. I.Hydrodynamical limit
- Accretion vs colliding wind models for the gamma-ray binary LS I +61 303: an assessment
- On the formation of TeV radiation in LS 5039
- TeV lightcurve of PSR B1259-63/SS2883
- Periodic Emission from the Gamma-ray Binary 1FGL J1018.6-5856
- INTEGRAL and XMM-Newton observations of LSI +61 303
- The changing milliarcsecond radio morphology of the gamma-ray binary LS 5039
- The magnetic field and the location of the TeV emitter in Cygnus X-1 and LS 5039
- Revealing the extended radio emission from the gamma-ray binary HESS J0632+057
- Discovery of VHE emission towards the Carina arm region with the H.E.S.S. telescope array: HESS J1018-589
- Direct Wind Accretion and Jet Launch in Binary Systems
- A model for the two component gamma-ray spectra observed from the gamma-ray binaries
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