Phase-resolved polarization properties of the pulsar striped wind synchrotron emission
arXiv:1308.0973 · doi:10.1093/mnras/stt1214
Abstract
Since the launch of the Fermi telescope more than five years ago, many new gamma-ray pulsars have been discovered with intriguing properties challenging our current understanding of pulsar physics. Observation of the Crab pulsar furnish today a broad band analysis of the pulsed spectrum with phase-resolved variability allowing to refine existing model to explain pulse shape, spectra and polarization properties. The latter gives inside into the geometry of the emitting region as well as on the structure of the magnetic field. Based on an exact analytical solution of the striped wind with finite current sheet thickness, we analyze in detail the phase-resolved polarization variability emanating from the synchrotron radiation. We assume that the main contribution to the wind emissivity comes from a thin transition layer where the dominant toroidal magnetic field reverses its polarity, the so-called current sheet. The resulting radiation is mostly linearly polarized. In the off-pulse region, the electric vector lies in the direction of the projection onto the plane of the sky of the rotation axis of the pulsar. This property is unique to the wind model and in good agreement with the Crab data. Other properties such as a reduced degree of polarization and a characteristic sweep of the polarization angle within the pulses are also reproduced. These properties are qualitatively unaffected by variations of the wind Lorentz factor, the lepton injection power law index, the contrast in hot and cold particle, the obliquity of the pulsar and the inclination of the line of sight.
Accepted by MNRAS
References in corpus (8)
- Observation of Pulsed Gamma-rays Above 25 GeV from the Crab Pulsar with MAGIC
- Polarization of the Crab pulsar and nebula as observed by the Integral/IBIS telescope
- Optical polarisation of the Crab pulsar: precision measurements and comparison to the radio emission
- High-energy emission from the pulsar striped wind: a synchrotron model for gamma-ray pulsars
- Pulse Profiles, Spectra and Polarization Characteristics of Non-Thermal Emissions from the Crab-Like Pulsars
- The optical to gamma-ray emission of the Crab pulsar: a multicomponent model
- The Optical Polarisation of the Vela Pulsar revisited
- The multicomponent model of the Crab Pulsar at energies above 25 GeV
Cited by in corpus (19)
- Theory of pulsar magnetosphere and wind
- Very high energy emission as a probe of relativistic magnetic reconnection in pulsar winds
- Polarized synchrotron emission from the equatorial current sheet in gamma-ray pulsars
- Multiwavelength Polarization of Rotation-Powered Pulsars
- Lepton acceleration in the vicinity of the event horizon: High-energy and Very-high-energy emissions from rotating black holes with various masses
- -ray polarimetry with conversions to pairs: polarization asymmetry and the way to measure it
- Lepton acceleration in the vicinity of the event horizon: Very-high-energy emissions from super-massive black holes
- The PoGO+ view on Crab off-pulse hard X-ray polarisation
- Very High-Energy Emission from the Direct Vicinity of Rapidly Rotating Black Holes
- Gamma-Ray Polarimetry of the Crab Pulsar Observed by POLAR
- Synthetic pulsar lightcurves from global kinetic simulations and comparison with the Fermi-LAT catalog
- Thermal synchrotron radiation from RRMHD simulations of the double tearing mode reconnection - Application to the Crab flares
- Observational connection of non-thermal X-ray emission from pulsars with their timing properties and thermal emission
- Effect of geodetic precession on the evolution of pulsar high-energy pulse profiles as derived with the striped-wind model
- Pulsar striped winds
- Crab Pulsar: IXPE Observations Reveal Unified Polarization Properties Across Optical and Soft X-Ray Bands
- XL-Calibur measurements of polarised hard X-ray emission from the Crab
- Pulsar current sheet Cerenkov radiation
- On the internal structure of the current sheet in the pulsar wind