Frequency dependence of pulse width for 150 radio normal pulsars
arXiv:1406.5841 · doi:10.1088/0067-0049/215/1/11
Abstract
The frequency dependence of pulse width is studied for 150 normal pulsars, mostly selected from the European Pulsar Network, for which the 10\% multifrequency pulse widths can be well fit with the Thorsett relationship W_{10}=Aν^μ+W_{\rm 10, min}. The relative fraction of pulse width change between 0.4~GHz and 4.85~GHz, η=(W_{4.85}-W_{0.4})/W_{0.4}, is calculated in terms of the best-fit relationship for each pulsar. It is found that 81 pulsars (54\%) have \% (group A), showing considerable profile narrowing at high frequencies, 40 pulsars (27\%) have 10\%\% (group B), meaning a marginal change in pulse width, and 29 pulsars (19\%) have \% (group C), showing a remarkable profile broadening at high frequencies. The fractions of the group-A and group-C pulsars suggest that the profile narrowing phenomenon at high frequencies is more common than the profile broadening phenomenon, but a large fraction of the group-B and group-C pulsars (a total of 46\%) is also revealed. The group-C pulsars, together with a portion of group-B pulsars with a slight pulse broadening, can hardly be explained using the conventional radius-to-frequency mapping, which only applies to the profile narrowing phenomenon. Based on a recent version of the fan beam model, a type of broadband emission model, we propose that the diverse frequency dependence of pulse width is a consequence of different types of distribution of emission spectra across the emission region. The geometrical effect predicting a link between the emission beam shrinkage and the spectrum steepening is tested but disfavored.
15 figures,7 tables, Published in ApJS
References in corpus (3)
Cited by in corpus (13)
- Frequency-dependent effects of gravitational lensing within plasma
- A Study of Multi-frequency Polarization Pulse Profiles of Millisecond Pulsars
- Meterwavelength Single-pulse Polarimetric Emission Survey
- The Thousand-Pulsar-Array programme on MeerKAT: -- VI. Pulse widths of a large and diverse sample of radio pulsars
- 5 GHz TMRT observations of 71 pulsars
- The LOFAR Tied-Array All-Sky Survey: Timing of 21 pulsars including the first binary pulsar discovered with LOFAR
- A Statistical Analysis of the Nulling Pulsar Population
- TMRT observations of 26 pulsars at 8.6 GHz
- Pulse profiles and timing of PSR J17572421
- A broadband radio study of PSR J0250+5854: the slowest-spinning radio pulsar known
- VLA Observations of Single Pulses from the Galactic Center Magnetar
- Multifrequency Study on the Mode Switching of PSR J0614+2229
- New upper limits on low-frequency radio emission from isolated neutron stars with LOFAR