Updated gravitational-wave upper limits on the internal magnetic field strength of recycled pulsars
arXiv:1112.1542 · doi:10.1111/j.1365-2966.2011.20350.x
Abstract
Recent calculations of the hydromagnetic deformation of a stratified, non-barotropic neutron star are generalized to describe objects with superconducting interiors, whose magnetic permeability μis much smaller than the vacuum value μ_0. It is found that the star remains oblate if the poloidal magnetic field energy is \gtrsim 40% of total magnetic field energy, that the toroidal field is confined to a torus which shrinks as μdecreases, and that the deformation is much larger (by a factor \sim μ_0/μ) than in a non-superconducting object. The results are applied to the latest direct and indirect upper limits on gravitational-wave emission from Laser Interferometer Gravitational Wave Observatory (LIGO) and radio pulse timing (spin-down) observations of 81 millisecond pulsars, to show how one can use these observations to infer the internal field strength. It is found that the indirect spin-down limits already imply astrophysically interesting constraints on the poloidal-toroidal field ratio and diamagnetic shielding factor (by which accretion reduces the observable external magnetic field, e.g. by burial). These constraints will improve following gravitational-wave detections, with implications for accretion-driven magnetic field evolution in recycled pulsars and the hydromagnetic stability of these objects' interiors.
10 pages, 1 table, 4 figures
References in corpus (14)
- Neutron Star Observations: Prognosis for Equation of State Constraints
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Modelling magnetically deformed neutron stars
- Maximum elastic deformations of compact stars with exotic equations of state
- Magnetic field dissipation in neutron star crusts: from magnetars to isolated neutron stars
- Mountains on Neutron Stars: Accreted vs. Non-Accreted crusts
- Gravitational wave emission from a magnetically deformed non-barotropic neutron star
- Searching for gravitational waves from Cassiopeia A with LIGO
- Maximum gravitational-wave energy emissible in magnetar flares
- Populating the Galaxy with pulsars I: stellar & binary evolution
- Quadrupole moment of a magnetically confined mountain on an accreting neutron star: effect of the equation of state
- Improved estimate of the detectability of gravitational radiation from a magnetically confined mountain on an accreting neutron star
- Prospects of observing continuous gravitational waves from known pulsars
- Designing a cross-correlation search for continuous-wave gravitational radiation from a neutron star in the supernova remnant SNR 1987A
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