Application of a new method to study the spin equilibrium of Aql X-1: the possibility of gravitational radiation
arXiv:1801.00498 · doi:10.3847/1538-4357/aa8169
Abstract
Accretion via disks can make neutron stars in low-mass X-ray binaries (LMXBs) fast spinning, and some of these stars are detected as millisecond pulsars. Here we report a practical way to find out if a neutron star in a transient LMXB has reached the spin equilibrium by disk--magnetosphere interaction alone, and if not, to estimate this spin equilibrium frequency. These can be done using specific measurable source luminosities, such as the luminosity corresponding to the transition between the accretion and propeller phases, and the known stellar spin rate. Such a finding can be useful to test if the spin distribution of millisecond pulsars, as well as an observed upper cutoff of their spin rates, can be explained using disk--magnetosphere interaction alone, or additional spin-down mechanisms, such as gravitational radiation, are required. Applying our method, we find that the neutron star in the transient LMXB Aql X--1 has not yet reached the spin equilibrium by disk--magnetosphere interaction alone. We also perform numerical computations, with and without gravitational radiation, to study the spin evolution of Aql X--1 through a series of outbursts and to constrain its properties. While we find that the gravitational wave emission from Aql X--1 cannot be established with certainty, our numerical results show that the gravitational radiation from Aql X--1 is possible, with a g cm upper limit of the neutron star misaligned mass quadrupole moment.
11 pages, 4 figures, published in The Astrophysical Journal
References in corpus (8)
- A Radio Pulsar/X-ray Binary Link
- Detecting gravitational wave emission from the known accreting neutron stars
- "Propeller" Regime of Disk Accretion to Rapidly Rotating Stars
- The return to quiescence of Aql X-1 following the 2010 outburst
- A Double Outburst from IGR J00291+5934: Implications for Accretion Disk Instability Theory
- Spin frequency distributions of binary millisecond pulsars
- The birth properties of Galactic millisecond radio pulsars
- The Effect of Transient Accretion on the Spin-Up of Millisecond Pulsars
Cited by in corpus (5)
- An emission spectrum for WASP-121b measured across the 0.8-1.1 micron wavelength range using the Hubble Space Telescope
- MOA-2007-BLG-400 A Super-Jupiter Mass Planet Orbiting a Galactic BulgeK-dwarf Revealed by Keck Adaptive Optics Imaging
- The permanent ellipticity of the neutron star in PSR J1023+0038
- Spin evolution of neutron stars in two modes: implication for millisecond pulsars
- Confirmation of Color Dependent Centroid Shift Measured After 1.8 years with HST