On Pair Production in the Crab Pulsar
arXiv:astro-ph/9808047 · doi:10.1086/311610
Abstract
We consider the widespread assumption that coherent pulsar radio emission is based on extended pair production leading to plasma densities highly exceeding the Goldreich-Julian density. We show as an example that the observed low frequency (160 MHz) emission of the Crab pulsar is incompatible to the model of extended pair production. Our results rule out significant pair production if a plasma process is responsible for coherence and the radio emission originates from inside the light cylinder.
accepted for publication in ApJ Letters; 4 pages, no figures
Cited by in corpus (16)
- Radio Emission Signatures in the Crab Pulsar
- Coherent Emission Mechanisms in Astrophysical Plasmas
- Understanding the radio emission geometry of PSR B0329+54
- Radio Emission Physics in the Crab Pulsar
- Altitude-dependent polarization in radio pulsars
- A Fan Beam Model for Radio Pulsars. I. Observational Evidence
- Charge densities above pulsar polar caps
- Wave Modes in the Magnetospheres of Pulsars and Magnetars
- A model for double notches and bifurcated components in radio profiles of pulsars and magnetars - Evidence for the parallel acceleration maser in pulsar magnetosphere
- The induced turbulence effect on propagation of radio emission in pulsar magnetospheres
- A Relativistic-Plasma Compton Maser
- The mechanism of coherent radio emission in some classes of pulsar
- Fast Radio Bursts as crustal dynamical events induced by magnetic field evolution in young magnetars
- Excitation and conversion of electromagnetic waves in pulsar magnetospheres
- Superdense beaming of axion dark matter in the vicinity of the light cylinder of pulsars
- The Crab pulsar: ion-proton plasma and high-frequency radio spectrum