On the peculiarities in the rotational frequency evolution of isolated neutron stars
Abstract
The measurements of pulsar frequency second derivatives have shown that they are times larger than expected for standard pulsar spin-down law, and are even negative for about half of pulsars. We explain these paradoxical results on the basis of the statistical analysis of the rotational parameters , and of the subset of 295 pulsars taken mostly from the ATNF database. We have found a strong correlation between and for both and , as well as between and . We interpret these dependencies as evolutionary ones due to being nearly proportional to the pulsars' age. The derived statistical relations as well as "anomalous" values of are well described by assuming the long-time variations of the spin-down rate. The pulsar frequency evolution, therefore, consists of secular change of , and according to the power law with , the irregularities, observed within a timespan as a timing noise, and the variations on the timescale larger than that timespan -- several tens of years.
Cite
@article{arxiv.astro-ph/0612189,
title = {On the peculiarities in the rotational frequency evolution of isolated neutron stars},
author = {A. Biryukov and G. Beskin and S. Karpov},
journal= {arXiv preprint arXiv:astro-ph/0612189},
year = {2008}
}
Comments
4 pages, 3 figures. Accepted for publication in ApSS, in the proceedings of the conference "Isolated Neutron Stars: from the Interior to the Surface", London, April 2006; eds. S. Zane, R. Turolla and D. Page