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Glitches in southern pulsars.

Authors :
Wang, N.
Manchester, R.N.
Pace, R.T.
Bailes, M.
Kaspi, V.M.
Stappers, B.W.
Lyne, A.G.
Source :
Monthly Notices of the Royal Astronomical Society; 10/1/2000, Vol. 317 Issue 4, p843-860, 18p, 5 Charts, 47 Graphs
Publication Year :
2000

Abstract

Timing observations of 40 mostly young pulsars using the ATNF Parkes radio telescope between 1990 January and 1998 December are reported. In total, 20 previously unreported glitches and 10 other glitches were detected in 11 pulsars. These included 12 glitches in PSR J1341-6220, corresponding to a glitch rate of 1.5 glitches per year. We also detected the largest known glitch, in PSR J1614-5047, with Δν[sub g]ν≈6.5×10[sup -6], where ν=1/P is the pulse frequency. Glitch parameters were determined both by extrapolating timing solutions to interglitch intervals and by phase-coherent timing fits across the glitch(es). These fits also give improved positions and dispersion measures for many of the pulsars. Analysis of glitch parameters, both from this work and from previously published results, shows that most glitches have a fractional amplitude Δν[sub g]ν of between 10[sup -8] and 10[sup -6]. There is no consistent relationship between glitch amplitude and the time since the previous glitch or the time to the following glitch, either for the ensemble or for individual pulsars. As previously recognized, the largest glitch activity is seen in pulsars with ages of order 10[sup 4] yr, but for about 30 per cent of such pulsars, no glitches were detected in the 8-year data span. There is some evidence for a new type of timing irregularity in which there is a significant increase in pulse frequency over a few days, accompanied by a decrease in the magnitude of the slow-down rate. Fits of an exponential recovery to post-glitch data show that for most older pulsars, only a small fraction of the glitch decays. In some younger pulsars a large fraction of the glitch decays, but in others there is very little decay. Apart from the Crab pulsar, there is no clear dependence of recovery time-scale on pulsar age. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
PULSARS
RADIO telescopes

Details

Language :
English
ISSN :
00358711
Volume :
317
Issue :
4
Database :
Complementary Index
Journal :
Monthly Notices of the Royal Astronomical Society
Publication Type :
Academic Journal
Accession number :
5518983
Full Text :
https://doi.org/10.1046/j.1365-8711.2000.03713.x