The Thousand-Pulsar-Array programme on MeerKAT XI: Application of the rotating vector model
arXiv:2212.03988 · doi:10.1093/mnras/stac3636
Abstract
In spite of the rich phenomenology of the polarization properties of radio pulsars, the rotating vector model (RVM) created 50 years ago remains the best method to determine the beam geometry of a pulsar. We apply the RVM to a sample of 854 radio pulsars observed with the MeerKAT telescope in order to draw conclusions about the population of pulsars as a whole. The main results are that (i) the geometrical interpretation of the position angle traverse is valid in the majority of the population, (ii) the pulsars for which the RVM fails tend to have a high fraction of circular polarization compared to linear polarization, (iii) emission heights obtained through both geometrical and relativistic methods show that the majority of pulsars must have emission heights less than 1000~km independent of spin period, (iv) orthogonal mode jumps are seen in the position angle traverse in about one third of the population. All these results are weakly dependent on the pulsar spin-down energy.
accepted by MNRAS
References in corpus (29)
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- The MeerKAT Telescope as a Pulsar Facility: System verification and early science results from MeerTime
- Profile and polarization characteristics of energetic pulsars
- Pulsar braking and the P-Pdot diagram
- An empirical model for the beams of radio pulsars
- Radio emission evolution, polarimetry and multifrequency single pulse analysis of the radio magnetar PSR J1622-4950
- Profile morphology and polarization of young pulsars
- The population of pulsars with interpulses and the implications for beam evolution
- Polarized radio emission from the magnetar XTE J1810-197
- Constraints on viewing geometries from radio observations of -ray-loud pulsars using a novel method
- A Fan Beam Model for Radio Pulsars. I. Observational Evidence
- On the beam properties of radio pulsars with interpulse emission
- The Thousand-Pulsar-Array programme on MeerKAT I: Science objectives and first results
- Measurements of pulse jitter and single-pulse variability in millisecond pulsars using MeerKAT
- The Thousand-Pulsar-Array programme on MeerKAT: -- VI. Pulse widths of a large and diverse sample of radio pulsars
- The complex polarization angles of radio pulsars: orthogonal jumps and interstellar scattering
- The Period-Width relationship for radio pulsars revisited
- The Thousand-Pulsar-Array programme on MeerKAT IV: Polarisation properties of young, energetic pulsars
- Mapping the magnetosphere of PSR B1055-52
- Investigating the magnetic inclination angle distribution of -ray-loud radio pulsars
- Visibility of pulsar emission: motion of the visible point
- The Thousand-Pulsar-Array programme on MeerKAT -- V. Scattering analysis of single-component pulsars
- Orthogonal pulsars as a key test for pulsar evolution
- The origin of the frequency-dependent behaviour of pulsar radio profiles
- Artefacts of circumpolar cartography in radio pulsar polarization
- Radio pulsar polarization as a coherent sum of orthogonal proper mode waves
- Tackling Radio Polarization of Energetic Pulsars
- Magnetic quadri-dipolar stars rotating in vacuum
- The geometry of a radio pulsar beam
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- Science Using Single-Pulse Exploration with Combined Telescopes. I. The mode switching, flaring, and single-pulse morphology of PSR B1822-09
- Radio Pulsar B095008: Radiation in Magnetosphere and Sparks above Surface
- A MeerKAT view of the double pulsar eclipses -- Geodetic precession of pulsar B and system geometry
- Topology of Pulsar Profiles (ToPP). I. Graph theory method and classification of the EPN
- An activity transition in FRB 20201124A: methodological rigor, detection of frequency-dependent cessation, and a geometric magnetar model
- A double dipole geometry for PSR~J0740+6620
- Vacuum birefringence and the polarized X-ray emission from a radio magnetar
- Constraining the origin of the long term periodicity of FRB 20180916B with Polarization Position Angle
- Evidence for the spin-kick alignment of pulsars from the statistics of their magnetic inclinations
- Investigation of individual pulse emission behaviours from pulsar J17410840
- Localisation of the non-thermal X-ray emission of PSR~J2229+6114 from its multi-wavelength pulse profiles
- Origin of radio polarization in pulsar polar caps
- Acceleration Potential and Density Profile of Secondary Plasma in the Magnetosphere of Orthogonal Pulsars
- Radio polarization of millisecond pulsars with multipolar magnetic fields
- Smoking gun signature from axion and the constraints with radio telescopes
- Frequency evolution of pulsar emission: Further evidence for fan beam model