Gravitational-wave spin-down and stalling lower limits on the electrical resistivity of the accreted mountain in a millisecond pulsar
arXiv:1005.2257 · doi:10.1088/0004-637X/717/1/404
Abstract
The electrical resistivity of the accreted mountain in a millisecond pulsar is limited by the observed spin-down rate of binary radio millisecond pulsars (BRMSPs) and the spins and X-ray fluxes of accreting millisecond pulsars (AMSPs). We find (where is the spin-down age) for BRMSPs and (where and are the actual and Eddington accretion rates) for AMSPs. These limits are inferred assuming that the mountain attains a steady state, where matter diffuses resistively across magnetic flux surfaces but is replenished at an equal rate by infalling material. The mountain then relaxes further resistively after accretion ceases. The BRMSP spin-down limit approaches the theoretical electron-impurity resistivity at temperatures $\ga 10^5$ K for an impurity concentration of , while the AMSP stalling limit falls two orders of magnitude below the theoretical electron-phonon resistivity for temperatures above K. Hence BRMSP observations are already challenging theoretical resistivity calculations in a useful way. Next-generation gravitational-wave interferometers will constrain at a level that will be competitive with electromagnetic observations.
accepted for publication in ApJ.
References in corpus (18)
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Detecting gravitational wave emission from the known accreting neutron stars
- Upper limits on gravitational wave emission from 78 radio pulsars
- Magnetic field dissipation in neutron star crusts: from magnetars to isolated neutron stars
- Searching for gravitational waves from Cassiopeia A with LIGO
- Cooling of the quasi-persistent neutron star X-ray transients KS 1731-260 and MXB 1659-29
- Upper limit map of a background of gravitational waves
- Are neutron stars with crystalline colour superconducting cores interesting for the LIGO experiment?
- Resistive relaxation of a magnetically confined mountain on an accreting neutron star
- Improved estimate of the detectability of gravitational radiation from a magnetically confined mountain on an accreting neutron star
- Thermal conductivity and phase separation of the crust of accreting neutron stars
- Three-dimensional stability of magnetically confined mountains on accreting neutron stars
- Sinking of a magnetically confined mountain on an accreting neutron star
- Detecting gravitational waves from accreting neutron stars
- How photon astronomy affects searches for continuous gravitational waves
- Accreting neutron star spins and the equation of state
- Does the accreting millisecond pulsar XTE J1814-338 precess?
- A New Class of Radio Pulsars - Back in 1982
Cited by in corpus (6)
- Searches for Continuous-Wave Gravitational Radiation
- Gravitational Waves: Sources, Detectors and Searches
- Recent searches for continuous gravitational waves
- Designing a cross-correlation search for continuous-wave gravitational radiation from a neutron star in the supernova remnant SNR 1987A
- Constraining the ellipticity of millisecond pulsars with observed spin-down rates
- Of Mountains and Molehills : Gravitational Waves from Neutron Stars