Gamma-ray binaries: pulsars in disguise ?
arXiv:astro-ph/0605287 · doi:10.1051/0004-6361:20054779
Abstract
LS 5039 and LSI +61 303 are unique amongst high-mass X-ray binaries (HMXB) for their spatially-resolved radio emission and their counterpart at >GeV gamma-ray energies, canonically attributed to non-thermal particles in an accretion-powered relativistic jet. The only other HMXB known to emit very high energy (VHE) gamma-rays, PSR B1259-63, harbours a non-accreting millisecond pulsar. I investigate whether the interaction of the relativistic wind from a young pulsar with the wind from its stellar companion, as in PSR B1259-63, constitutes a viable scenario to explain the observations of LS 5039 and LSI +61 303. Emission would arise from the shocked pulsar wind material, which then flows away to large distances in a comet-shape tail, reproducing on a smaller scale what is observed in isolated, high motion pulsars interacting with the ISM. Simple expectations for the SED are derived and are shown to depend on few input parameters. Detailed modelling of the particle evolution is compared to the observations from radio to TeV energies. Acceleration at the shock provides high energy electrons that steadily emit synchrotron in X-rays and inverse Compton scatter stellar light to gamma-rays. Electrons streaming out of the system emit at IR frequencies and below. The overall aspect of the SEDs is adequately reproduced for standard values of the parameters. The morphology of the radio tail can mimic a microquasar jet. Good agreement is found with the published VLBI map of LS 5039 and predictions are made on the expected change in appearance with orbital phase. The pulsar wind scenario can provide a common, viable framework to interpret the emission from all three gamma-ray binaries.
20 pages, 20 figures, accepted for publication in A&A
References in corpus (3)
Cited by in corpus (35)
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- On the formation of TeV radiation in LS 5039
- The modulation of the gamma-ray emission from the binary LS 5039
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- The changing milliarcsecond radio morphology of the gamma-ray binary LS 5039
- Chandra Observations of the Gamma-ray Binary LSI+61303: Extended X-ray Structure?
- Exploring the connection between the stellar wind and the non-thermal emission in LS 5039
- Pulsar wind zone processes in LS 5039
- Non-thermal emission from secondary pairs in close TeV binary systems
- High-Energy Aspects of Astrophysical Jets
- Spectral signature of a free pulsar wind in the gamma-ray binaries LS 5039 and LSI +61$\degr$303
- Pulsar model of the high energy phenomenology of LS 5039
- gamma-ray emission from LS I +61 303: The impact of basic system uncertainties
- A model of the TeV flare of Cygnus X-1: electron acceleration and extended pair cascades
- INTEGRAL observation of hard X-ray variability of the TeV binary LS5039 / RX J1826.2-1450
- Swift/XRT monitoring of five orbital cycles of LSI +61 303
- Probing the Pulsar Wind in the gamma-ray Binary System PSR B1259-63/SS 2883
- Physics of accretion flows around compact objects
- TeV source HESS J1804-216 in X-rays and other wavelengths
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- Studying the properties of the radio emitter in LS 5039
- Constraints on the Geometry of the VHE Emission in LS 5039 from Photon-Photon Deabsorption
- Gamma-ray binaries
- INTEGRAL serendipitous detection of the gamma-ray microquasar LS 5039
- Candidate counterparts to the soft gamma-ray flare in the direction of LS I +61303
- VHE Gamma-rays from Galactic X-ray Binary Systems
- Status of Very High Energy gamma-ray Astronomy as of early 2008
- Best-Bet Astrophysical Neutrino Sources
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- High-energy emission from microqusars
- The accretion regime of LS 5039: 3-D SPH simulations
- H.E.S.S. Observations of LS 5039