Pulsar polarization: a broad-band population view with the Parkes Ultra-Wideband receiver
arXiv:2301.05628 · doi:10.1093/mnras/stad070
Abstract
The radio polarization properties of the pulsar population are only superficially captured by the conventional picture of pulsar radio emission. We study the broadband polarization of 271 young radio pulsars, focusing particularly on circular polarization, using high quality observations made with the Ultra-Wideband Low receiver on Murriyang, the Parkes radio telescope. We seek to encapsulate polarization behaviour on a population scale by defining broad categories for frequency- and phase-dependent polarization evolution, studying the co-occurrences of these categorizations and comparing them with average polarization measurements and spin-down energy (). This work shows that deviations of the linear polarization position angle (PA) from the rotating vector model (RVM) are linked to the presence of circular polarization features and to frequency evolution of the polarization. Polarization fraction, circular polarization contribution and profile complexity all evolve with across the population, with the profiles of high- pulsars being simple and highly linearly polarized. The relationship between polarization fraction and circular contribution is also seen to evolve such that highly polarized profiles show less variation in circular contribution with frequency than less strongly polarized profiles. This evolution is seen both across the population and across frequency for individual sources. Understanding pulsar radio polarization requires detailed study of individual sources and collective understanding of population-level trends. For the former, we provide visualizations of their phase- and frequency-resolved polarization parameters. For the latter, we have highlighted the importance of including the impact of circular polarization and of .
20 pages, 7 figures, supplementary material available at the MNRAS website or by contacting the lead author
References in corpus (19)
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- A Study of Multi-frequency Polarization Pulse Profiles of Millisecond Pulsars
- Profile and polarization characteristics of energetic pulsars
- Polarimetry of 600 pulsars from observations at 1.4 GHz with the Parkes radio telescope
- An empirical model for the beams of radio pulsars
- Profile morphology and polarization of young pulsars
- Pulsar polarisation below 200 MHz: Average profiles and propagation effects
- High-fidelity radio astronomical polarimetry using a millisecond pulsar as a polarized reference source
- Wideband polarized radio emission from the newly revived magnetar XTE J1810197
- On the beam properties of radio pulsars with interpulse emission
- The complex polarization angles of radio pulsars: orthogonal jumps and interstellar scattering
- Two years of pulsar observations with the Ultra-Wideband Receiver on the Parkes radio telescope
- A polarization census of bright pulsars using the Ultra-Wideband Receiver on the Parkes radio telescope
- Frequency dependence of orthogonal polarisation modes in pulsars
- Searching for pulsars associated with polarised point sources using LOFAR: Initial discoveries from the TULIPP project
- Artefacts of circumpolar cartography in radio pulsar polarization
- Circular polarization in radio pulsar PSR B1451-68: coherent mode transitions and intrabeam interference
- Pulsar polarimetry with the Parkes Ultra-Wideband receiver
- The polarization of the drifting sub-pulses from PSR B1919+21
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- Magnetic-field oscillation model of pulsar radio emission: prediction of an observable effect
- The TRAPUM Small Magellanic Cloud pulsar survey with MeerKAT -- II. Nine new radio timing solutions and glitches from young pulsars
- Frequency evolution of pulsar emission: Further evidence for fan beam model