arXiv · astro-ph/0603034
Protoneutron star dynamos: pulsars, magnetars, and radio-silent X-ray emitting neutron stars
Abstract
We discuss the mean-field dynamo action in protoneutron stars that are subject to instabilities during the early evolutionary phase. The mean field is generated in the neutron-finger unstable region where the Rossby number is $\sim 1$ and mean-field dynamo is efficient. Depending on the rotation rate, the mean-field dynamo can lead to the formation of three different types of pulsars. If the initial period of the protoneutron star is short, then the generated large-scale field is very strong ($> 3 \times 10^{13}$G) and exceeds the small-scale field at the neutron star surface. If rotation is moderate, then the pulsars are formed with more or less standard dipole fields ($< 3 \times 10^{13}$G) but with surface small-scale magnetic fields stronger than the dipole field. If rotation is very slow, then the mean-field dynamo does not operate, and the neutron star has no global field. Nevertheless, strong small-scale fields are generated in such pulsars, and they can manifest themselves as objects with very low spin-down rate but with a strong magnetic field inferred from the spectral features.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
A. Bonanno, V. Urpin, G. Belvedere. 2006-03-01. Protoneutron star dynamos: pulsars, magnetars, and radio-silent X-ray emitting neutron stars. https://doi.org/10.1051/0004-6361%3A20054473
Cite the original work for its findings. Save a collection to share your selection of sources.