The birth properties of Galactic millisecond radio pulsars
arXiv:astro-ph/0701444 · doi:10.1111/j.1365-2966.2006.11365.x
Abstract
We model the population characteristics of the sample of millisecond pulsars within a distance of 1.5kpc.We find that for a braking index n=3, the birth magnetic field distribution of the neutron stars as they switch on as radio MSPs can be represented by a Gaussian with mean and and their birth spin period by a Gaussian with mean ms and ms. Our study, which takes into consideration acceleration effects on the observed spin-down rate, shows that most MSPs are born with periods that are close to the currently observed values and with average characteristic ages typically larger by a factor 1.5 compared to the true age. The Galactic birth rate of the MSPs is deduced to be $\gsimeq 3.2 \times 10^{-6}$ yr near the upper end of previous estimates and larger than the semi-empirical birth rate yr of the LMXBs. The mean birth spin period deduced by us for the radio MSPs is a factor 2 higher than the mean spin period observed for the accretion and nuclear powered X-ray pulsars, although this discrepancy can be resolved if we use a braking index , the value appropriate to spin down caused by angular momentum losses by gravitational radiation or magnetic multipolar radiation. We discuss the arguments for and against the hypothesis that accretion induced collapse may constitute the main route to the formation of the MSPs, pointing out that on the AIC scenario the low magnetic fields of the MSPs may simply reflect the field distribution in isolated magnetic white dwarfs which has recently been shown to be bi-modal with a dominant component that is likely to peak at fields below G which would scale to neutron star fields below G.
8 pages, 2 figures, accepted for publication in the MNRAS
References in corpus (1)
Cited by in corpus (27)
- An Eccentric Binary Millisecond Pulsar in the Galactic Plane
- Population synthesis of radio and gamma-ray millisecond pulsars from the Galactic disk
- LOFAR discovery of the fastest-spinning millisecond pulsar in the Galactic field
- Relativistic stars with purely toroidal magnetic fields
- Populating the Galaxy with pulsars I: stellar & binary evolution
- Magnetic Field Generation in Stars
- Spin frequency distributions of binary millisecond pulsars
- The Effect of Transient Accretion on the Spin-Up of Millisecond Pulsars
- Millisecond Pulsars from Accretion Induced Collapse as the Origin of the Galactic Centre Gamma-ray Excess Signal
- Populating the Galaxy with pulsars -- II. Galactic dynamics
- Cosmic recycling of millisecond pulsars
- Continuous gravitational waves from Galactic neutron stars: demography, detectability and prospects
- A fast spinning magnetic white dwarf in the double-degenerate, super-Chandrasekhar system NLTT 12758
- Formation of Binary Millisecond Pulsars by Accretion-Induced Collapse of White Dwarfs under Wind-Driven Evolution
- Formation of redbacks via accretion induced collapse
- The Magnetized White Dwarf + Helium star Binary Evolution with Accretion-induced Collapse
- A strange star scenario for the formation of isolated millisecond pulsars
- Kinematic constraints on the ages and kick velocities of Galactic neutron star binaries
- The peculiar chemical abundance of the transitional millisecond pulsar PSR J1023+0038 -- Li enhancement
- Application of a new method to study the spin equilibrium of Aql X-1: the possibility of gravitational radiation
- Luminous Optical and X-ray Flaring of the Putative Redback Millisecond Pulsar 1FGL J0523.52529
- Spin evolution of neutron stars in two modes: implication for millisecond pulsars
- Magnetic quadri-dipolar stars rotating in vacuum
- The implications of a companion enhanced wind on millisecond pulsar production
- Detections of millisecond pulsars with the Fermi Large Area Telescope
- The effect of kick velocities on the spatial distribution of millisecond pulsars and implications for the Galactic center excess
- Are the magnetic fields of millisecond pulsars ~ 10^8 G?