TeV lightcurve of PSR B1259-63/SS2883
arXiv:astro-ph/0605663 · doi:10.1111/j.1365-2966.2007.12075.x
Abstract
The inverse Compton scattering of ultrarelativistic electrons accelerated at the pulsar wind termination shock is believed to be responsible for TeV gamma-ray signal recently reported from the binary system PSR B1259-63/SS2883. While this process can explain the energy spectrum of the observed TeV emission, the detected gamma-ray fluxes do not agree with the published theoretical predictions of the TeV lightcurve. The main objective of this paper is to show that the HESS results can be explained, under certain reasonable assumptions, by inverse Compton scenarios of gamma-ray production in the system. In this paper we study evolution of the energy spectra of relativistic electrons under different assumptions about the acceleration and energy-loss rates of electrons, and the impact of these processes on the lightcurve of IC gamma-rays. We demonstrate that the observed TeV lightcurve can be explained (i) by adiabatic losses which dominate over the entire trajectory of the pulsar with a significant increase towards the periastron, or (ii) by the sub-TeV cutoffs in the energy spectra of electrons due to the enhanced rate of Compton losses close to the periastron. The Compton deceleration of the pulsar wind contributes to the decrease of the nonthermal power released in the accelerated electrons, and thus to the reduction of the IC and synchrotron components of radiation close to the periastron. Although this effect alone cannot explain the observed lightcurves, the Comptonization of the pulsar wind leads to the formation of gamma-radiation with a line-type energy spectrum. While the HESS data already constrain the Lorentz factor of the wind, , future observations of this object with GLAST should allow a deep probe of the wind Lorentz factor in the range between and .
13 pages, 19 figures, accepted for publication in MNRAS
References in corpus (2)
Cited by in corpus (34)
- Discovery of High-Energy Gamma-Ray Emission from the Binary System PSR B1259-63/LS 2883 Around Periastron with Fermi
- Modeling interaction of relativistic and nonrelativistic winds in binary system PSR 1259-63/SS2883. I.Hydrodynamical limit
- On the formation of TeV radiation in LS 5039
- The proton low-mass microquasar: high-energy emission
- Magnetic field effects on neutrino production in microquasars
- A 3D dynamical model of the colliding winds in binary systems
- Unraveling the high-energy emission components of gamma-ray binaries
- TeV Gamma-ray Astronomy: A Summary
- High-Energy emissions from the Pulsar/Be binary system PSR J2032+4127/MT91 213
- Spectral signature of a free pulsar wind in the gamma-ray binaries LS 5039 and LSI +61$\degr$303
- Modelling Jets, Tori and Flares in Pulsar Wind Nebulae
- Relativistic fluid modelling of gamma-ray binaries. I. The model
- Gamma-rays from binary system with energetic pulsar and Be star with aspherical wind: PSR B1259-63/SS2883
- Overview of non-transient gamma-ray binaries and prospects for the Cherenkov Telescope Array
- Probing the Pulsar Wind in the gamma-ray Binary System PSR B1259-63/SS 2883
- Modelling the interaction between relativistic and non-relativistic winds in binary pulsar systems: strong magnetization of the pulsar wind
- H.E.S.S. and Fermi-LAT observations of PSR B1259-63/LS 2883 during its 2014 and 2017 periastron passages
- Modelling the multi-wavelength emissions from PSR B1259-63/LS 2883: the effects of the stellar disc on shock radiations
- Observation of the gamma-ray binary HESS J0632+057 with the H.E.S.S., MAGIC, and VERITAS telescopes
- A dynamical and radiation semi-analytical model of pulsar-star colliding winds along the orbit: Application to LS 5039
- Non-thermal radiation from a pulsar wind interacting with an inhomogeneous stellar wind
- Modeling the effects of clumpy winds in the high-energy light curves of γ-ray binaries
- Modelling the correlated keV/TeV light curves of Be/gamma-ray binaries
- A new approach to the GeV flare of PSR B1259-63/LS2883
- Broad-Band High-Energy Emission of the Gamma-ray Binary System LS 5039: Spectral and Temporal Features using NuSTAR and Fermi Observations
- Gamma-ray binaries beyond one-zone models: an application to LS 5039
- Does the gamma-ray binary LS I +61°303 harbor a magnetar?
- Properties of a hypothetical cold pulsar wind in LS~5039
- Relativistic Magnetized Astrophysical Plasma Outflows in Black-Hole Microquasars
- The major role of eccentricity in the evolution of colliding pulsar-stellar winds
- Non-thermal processes in the cluster of galaxies Abell 3376
- Polarization study of gamma-ray binary
- VHE Gamma-rays from Galactic X-ray Binary Systems
- 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