Inverse Compton Scattering Model for X-ray Emission of the Gamma-ray Binary LS 5039
arXiv:1211.0774 · doi:10.1088/0004-637X/761/2/146
Abstract
We propose a model for the gamma-ray binary LS 5039 in which the X-ray emission is due to the inverse Compton (IC) process instead of the synchrotron radiation. Although the synchrotron model has been discussed in previous studies, it requires a strong magnetic field which leads to a severe suppression of the TeV gamma-ray flux in conflict with H.E.S.S. observations. In this paper, we calculate the IC emission by low energy electrons (γ_e \lesssim 10^3) in the Thomson regime. We find that IC emission of the low energy electrons can explain the X-ray flux and spectrum observed with Suzaku if the minimum Lorentz factor of injected electrons γ_min is around 10^3. In addition, we show that the Suzaku light curve is well reproduced if γ_min varies in proportion to the Fermi flux when the distribution function of injected electrons at higher energies is fixed. We conclude that the emission from LS 5039 is well explained by the model with the IC emission from electrons whose injection properties are dependent on the orbital phase. Since the X-ray flux is primarily determined by the total number of cooling electrons, this conclusion is rather robust, although some mismatches between the model and observations at the GeV band remain in the present formulation.
19 pages, 3 figures, accepted for publication in ApJ
References in corpus (8)
- Gamma-ray binaries: pulsars in disguise ?
- Discovery of a point-like very-high-energy gamma-ray source in Monoceros
- Periodic Emission from the Gamma-ray Binary 1FGL J1018.6-5856
- A New TeV Binary: The Discovery of an Orbital Period in HESS J0632+057
- The modulation of the gamma-ray emission from the binary LS 5039
- Pulsar wind zone processes in LS 5039
- A model for the two component gamma-ray spectra observed from the gamma-ray binaries
- GLAST testing of a pulsar model matching H.E.S.S. observations of LS 5039
Cited by in corpus (5)
- Modelling the high-energy emission from gamma-ray binaries using numerical relativistic hydrodynamics
- High-Energy emissions from the Pulsar/Be binary system PSR J2032+4127/MT91 213
- High-energy emissions from the gamma-ray binary LS 5039
- Broad-Band High-Energy Emission of the Gamma-ray Binary System LS 5039: Spectral and Temporal Features using NuSTAR and Fermi Observations
- GeV emission of gamma-ray binary with pulsar scenario