2025/12/22 by Cao, Shunshun, Guo, Yanjun, Jiang, Jinchen +3
#FOS: Physical sciences #High Energy Astrophysical Phenomena (astro-ph.HE)
paper · doi:10.48550/arxiv.2512.19056
The nature of coherent radio emission is still challenging even after more than half a century of pulsar discovery, but it is generally a consensus that single-pulse observations are essential for probing the magnetospheric dynamics, especially with the largest single-dish telescope FAST (Five-hundred-meter Aperture Spherical radio Telescope). The frequency-dependent circular polarization of single pulses, with high signal-to-noise ratios, is recorded by the FAST, which shows great diversity, and we are trying an effort to understand such circular polarization based on the wave mode coupling in the limiting polarization region, and consequently to constrain the dynamical parameters. By quantitatively comparing models with data using Bayesian analysis, it is found that the plasma multiplicity is approximately between 100 and 102, while the Lorentz factor of the particles between 100.5 and 102. This study presents a systematic framework for integrating pulsar emission theories with observational data.