Formation of an evanescent proto-neutron star binary and the origin of pulsar kicks
arXiv:astro-ph/0207327 · doi:10.1086/344405
Abstract
If core collapse leads to the formation of a rapidly rotating bar-unstable proto-neutron star surrounded by fall-back material, then we might expect it to cool and fragment to form a double (proto)-neutron star binary into a super-close orbit. The lighter star should survive for awhile, until tidal mass loss propels it toward the minimum stable mass of a (proto)-neutron star, whereupon it explodes. Imshennik and Popov have shown that the explosion of the unstable, cold star can result in a large recoil velocity of the remaining neutron star. Here, we consider several factors that mitigate the effect and broaden the range of final recoil speeds, in particular the finite velocity and gravitational deflection of the ejecta, a range of original masses for the low mass companion and its cooling history, rotational phase averaging of the momentum impulse from non-instantaneous mass loss, and the possibility of a common envelope phase. In spite of these mitigating factors, we argue that this mechanism can still lead to substantial neutron star recoil speeds, close to, or even above, 1000 km/s.
11 pages, 3 Figures, To appear in The Astrophysical Journal
Cited by in corpus (29)
- The Expansion Asymmetry and Age of the Cassiopeia A Supernova Remnant
- Investigating stellar-mass black hole kicks
- 3-Dimensional Core-Collapse
- Neutron Star Kicks in Isolated and Binary Pulsars: Observational Constraints and Implications for Kick Mechanisms
- One-Armed Spiral Instability in Differentially Rotating Stars
- Evidence for quiescent synchrotron emission in the black hole X-ray transient Swift J1357.2-0933
- Has the black hole in XTE J1118+480 experienced an asymmetric natal kick?
- The long helical jet of the Lighthouse nebula, IGR J11014-6103
- Polarized x-rays from a magnetar
- The ultimate outcome of black hole - neutron star mergers
- Supernova remnant S147 and its associated neutron star(s)
- Non-axisymmetric instability and fragmentation of general relativistic quasi-toroidal stars
- Asymmetric neutrino propagation in newly born magnetized strange stars: GRB and kicks
- Pulsar spin-velocity alignment from single and binary neutron star progenitors
- Pulsar kicks via spin-1 color superconductivity
- On the nature of bimodal initial velocity distribution of neutron stars
- Rapidly rotating neutron star progenitors
- The rocket effect mechanism in neutron stars in supernova remnants
- Neutron star masses: dwarfs, giants and neighbors
- Modifications to the pulsar kick velocity due to magnetic interactions in dense plasma
- X-ray Polarisation in Magnetar Atmospheres -- Effects of Mode Conversion
- Natal kicks of compact objects
- Gravitational Waves from Supernova Mass Loss and Natal Kicks in Close Binaries
- Strongly interacting matter in extreme magnetic fields
- A hydrodynamic model for asymmetric explosions of rapidly rotating collapsing supernovae with a toroidal atmosphere
- Estimate for the neutrino magnetic moment from pulsar kick velocities induced at the birth of strange quark matter neutron stars
- Hypothesis about Enrichment of Solar System
- "In-System" Fission-Events: An Insight into Puzzles of Exoplanets and Stars?
- Isolated neutron stars: An astrophysical perspective