Large-scale flow dynamics and radiation in pulsar gamma-ray binaries
arXiv:1105.6236 · doi:10.1051/0004-6361/201117235
Abstract
Several gamma-ray binaries show extended X-ray emission that may be associated to interactions of an outflow with the medium. Some of these systems are, or may be, high-mass binaries harboring young nonaccreting pulsars, in which the stellar and the pulsar winds collide, generating a powerful outflow that should terminate at some point in the ambient medium. This work studies the evolution and termination, as well as the related radiation, of the shocked-wind flow generated in high-mass binaries hosting powerful pulsars. A characterization, based on previous numerical work, is given for the stellar/pulsar wind interaction. Then, an analytical study of the further evolution of the shocked flow and its dynamical impact on the surrounding medium is carried out. Finally, the expected nonthermal emission from the flow termination shock, likely the dominant emitting region, is calculated. The shocked wind structure, initially strongly asymmetric, becomes a quasi-spherical, supersonically expanding bubble, with its energy coming from the pulsar and mass from the stellar wind. This bubble eventually interacts with the environment on ~pc scales, producing a reverse and, sometimes, a forward shock. Nonthermal leptonic radiation can be efficient in the reverse shock. Radio emission is expected to be faint, whereas X-rays can easily reach detectable fluxes. Under very low magnetic fields and large nonthermal luminosities, gamma rays may also be significant. We conclude that the complexity of the stellar/pulsar wind interaction is likely to be smoothed out outside the binary system, where the wind-mixed flow accelerates and eventually terminates in a strong reverse shock. This shock may be behind the extended X-rays observed in some binary systems. For very powerful pulsars, part of the unshocked pulsar wind may directly interact with the large-scale environment.
11 pages, 6 Figures, 1 Table, Astronomy and Astrophysics, in press (small corrections after proofs)
References in corpus (30)
- Gamma-ray binaries: pulsars in disguise ?
- Gamma-Ray Emission Concurrent with the Nova in the Symbiotic Binary V407 Cygni
- 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
- Astrophysical parameters of LS2883 and implications for the PSR B1259-63 gamma-ray binary
- The jet-powered optical nebula of Cygnus X-1
- Discovery of a point-like very-high-energy gamma-ray source in Monoceros
- Detection of Gamma-ray Emission from the Eta-Carinae Region
- HESS J0632+057 : A new gamma-ray binary?
- A New TeV Binary: The Discovery of an Orbital Period in HESS J0632+057
- Confirmation of persistent radio jets in the microquasar LS 5039
- Episodic Transient Gamma-Ray Emission from the Microquasar Cygnus X-1
- INTEGRAL and XMM-Newton observations of LSI +61 303
- The bright unidentified gamma-ray source 1FGL J1227.9-4852: Can it be associated with an LMXB?
- Discovery of extended and variable radio structure from the gamma-ray binary system PSR B1259-63/LS 2883
- Hydrodynamic Interaction between the Be Star and the Pulsar in the TeV Binary PSR B1259-63/LS 2883
- The magnetic field and the location of the TeV emitter in Cygnus X-1 and LS 5039
- Evidence for gamma-ray emission from the low-mass X-ray binary system FIRST J102347.6+003841
- Chandra Observations of the Gamma-ray Binary LSI+61303: Extended X-ray Structure?
- Non thermal emission from microquasar/ISM interaction
- Pulsar wind zone processes in LS 5039
- Revealing the extended radio emission from the gamma-ray binary HESS J0632+057
- Deep Chandra observations of TeV binaries II: LS 5039
- gamma-ray emission from LS I +61 303: The impact of basic system uncertainties
- A Radio Pulsar Search of the Gamma-ray Binaries LS I +61 303 and LS 5039
- Extended X-ray emission in the vicinity of the microquasar LS 5039: pulsar wind nebula?
- Faint arc-minute extended radio emission around Cygnus X-3
- Candidate counterparts to the soft gamma-ray flare in the direction of LS I +61303
Cited by in corpus (38)
- Gamma-ray binaries and related systems
- FRB-periodicity: mild pulsars in tight O/B-star binaries
- Simulations of stellar/pulsar wind interaction along one full orbit
- Modelling the high-energy emission from gamma-ray binaries using numerical relativistic hydrodynamics
- Modelling the light curves of PSR B1259-63/LS 2883-II.The effects of anisotropic pulsar wind and Doppler-boosting
- Unraveling the high-energy emission components of gamma-ray binaries
- 3D dynamics and morphology of bow-shock Pulsar Wind Nebulae
- Orbital evolution of colliding star and pulsar winds in 2D and 3D; effects of: dimensionality, EoS, resolution, and grid size
- Simulating gamma-ray binaries with a relativistic extension of RAMSES
- 3D simulations of microquasar jets in clumpy stellar winds
- Impact of orbital motion on the structure and stability of adiabatic shocks in colliding wind binaries
- Discovery of VHE emission towards the Carina arm region with the H.E.S.S. telescope array: HESS J1018-589
- Periodic morphological changes in the radio structure of the gamma-ray binary LS 5039
- Direct Wind Accretion and Jet Launch in Binary Systems
- Rotation Measure Variations and Reversals of Repeating Fast Radio Bursts in Massive Binary Systems
- The effects of the stellar wind and orbital motion on the jets of high-mass microquasars
- Binaries with the eyes of CTA
- Modelling the interaction between relativistic and non-relativistic winds in binary pulsar systems: strong magnetization of the pulsar wind
- A hydrodynamics-informed, radiation model for HESS J0632057 from radio to gamma rays
- The dynamic X-ray nebula powered by the pulsar B1259-63
- Relativistic fluid modelling of gamma-ray binaries. II. Application to LS 5039
- The origin of the X-ray-emitting object moving away from PSR B1259-63
- A dynamical and radiation semi-analytical model of pulsar-star colliding winds along the orbit: Application to LS 5039
- Particle acceleration and multi-messenger radiation from Ultra-Luminous X-ray Sources: A new class of Galactic PeVatrons
- Formation of periodic FRB in binary systems with eccentricity
- Radio absorption in high-mass gamma-ray binaries
- High energy gamma-ray emission from compact galactic sources in the context of observations with the next generation Cherenkov Telescope Arrays
- Modeling the effects of clumpy winds in the high-energy light curves of γ-ray binaries
- Chandra Imaging of Gamma-Ray Binaries
- Decade-long X-ray observations of HESS J0632+057
- Properties of a hypothetical cold pulsar wind in LS~5039
- Gamma-rays from the binary system containing PSR J2032+4127 during its periastron passage
- High-Resolution Simulations of LS 5039
- The major role of eccentricity in the evolution of colliding pulsar-stellar winds
- Unveiling properties of the non-thermal X-ray production in the gamma-ray binary LS 5039 using the long-term pattern of its fast X-ray variability
- Relativistic astrospheres of gamma-ray binaries: modeling of non-thermal processes
- Exploring the region encompassing gamma Cygni SNR and MAGIC J2019+408 with the GMRT at 325 and 610 MHz
- Novel application to estimate the mass-loss and the dust-formation rates in O-type gamma-ray binaries using near-infrared photometry