An Empirical Model for the Radio Emission from Pulsars
arXiv:astro-ph/0208127 · doi:10.1046/j.1365-8711.2003.06815.x
Abstract
A model for slow radio pulsars is proposed which involves the entire magnetosphere in the production of the observed radio emission. It is argued that observations of pulsar profiles suggest that a feedback mechanism exists between the star surface and the null charge surface, requiring particle flow in both directions. In their flow to and from the surface the particles execute an azimuthal drift around the magnetic pole, thereby creating a ring of discrete `emission nodes' close to the surface. Motion of the nodes is observed as the well-known subpulse `drift', but is interpreted here as a small residual component of the real particle drift. The nodes can therefore move in either direction, or even remain stationary. A precise fit is found for the pulsar PSR0943+10. Azimuthal interactions between different regions of the magnetosphere depend on the angle between the magnetic and rotation axes and influence the conal type, as observed. The requirement of intermittent weak pair-production in an outergap suggests a natural evolutionary link between radio and gamma-ray pulsars.
17 pages 8 figures
References in corpus (13)
- Pulsar Polar Cap Heating and Surface Thermal X-Ray Emission II. Inverse Compton Radiation Pair Fronts
- Pulsar Polar Cap Heating and Surface Thermal X-Ray Emission I. Curvature Radiation Pair Fronts
- Pair-production multiplicities in rotation-powered pulsars
- Pair Multiplicities and Pulsar Death
- Toward An Empirical Theory of Pulsar Emission. VII. On the Spectral Behavior of Conal Beam Radii and Emission Heights
- Regimes of Pulsar Pair Formation and Particle Energetics
- Null-induced mode changes in PSR B0809+74
- Modelling of surface magnetic field in neutron stars: application to radio pulsars
- Electrodynamic Structure of an Outer Gap Accelerator: Location of the Gap and the Gamma-ray Emission from the Crab Pulsar
- The role of multipolar magnetic fields in pulsar magnetospheres
- Gamma-Ray Pulsars: Models and Predictions
- Vacuum Gap Model for PSR B0943+10
- Emission altitudes in young and old radio pulsars
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- The Topology and Polarisation of Subbeams Associated with the `Drifting' Subpulse Emission of Pulsar B0943+10 -- IV. Q-to-B-Mode Recovery Dynamics
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- Explaining the subpulse drift velocity of pulsar magnetosphere within the space-charge limited flow model
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- The ratio of profile peak separations as a probe of pulsar radio-beam structure
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