Evolution of neutron star + He star binaries: an alternative evolutionary channel to intermediate-mass binary pulsars
arXiv:1303.6155 · doi:10.1093/mnrasl/slt043
Abstract
It is difficult for intermediate-mass X-ray binaries to form compact intermediate-mass binary pulsars (IMBPs) with a short orbital-period ($\la 3 \rm d$), which have a heavy ($\ga 0.4 M_{\odot}$) CO or ONeMg white dwarf companions. Since neutron star + He star binaries may experience common-envelope evolution, they have some advantage to account for the formation of short orbital-period IMBPs. In this work, we explore the probability of IMBPs formed by this evolutionary channel. Using Eggleton's stellar evolution code, considering that the dead pulsars were spun up by the accreting material and angular momentum from the He star companions, we have calculated the evolution of a large number of neutron star + He star binaries. Our simulated results indicate that, the NS + He star evolutionary channel can produce IMBPs with a WD of and an orbital period of d, in which pulsars have a spin-period of ms. Comparing the calculated results with the observational parameters (spin period and orbital period) of 9 compact IMBPs, the NS + He star evolutionary channel can account for the formation of 4 sources. Therefore, NS + He star binaries offer an alternative evolutionary channel to compact IMBPs.
5 pages, 4 figures, accepted for publication in MNRAS letters
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Cited by in corpus (7)
- The formation of neutron star systems through accretion-induced collapse in white-dwarf binaries
- Ultra-compact X-ray binaries with He star companions
- Evolving ONe WD+He star systems to intermediate-mass binary pulsars
- Ultraluminous X-ray sources with He star companions
- He-shell flashes on the surface of oxygen-neon white dwarfs
- Formation of millisecond pulsars with wide orbits
- Magnetic braking of Ap/Bp stars: an alternative formation mechanism of compact intermediate-mass binary pulsars