Quadrupole moment of a magnetically confined mountain on an accreting neutron star: effect of the equation of state
arXiv:1109.1040 · doi:10.1111/j.1365-2966.2011.19431.x
Abstract
Magnetically confined mountains on accreting neutron stars are promising sources of continuous-wave gravitational radiation and are currently the targets of directed searches with long-baseline detectors like the Laser Interferometer Gravitational Wave Observatory (LIGO). In this paper, previous ideal-magnetohydrodynamic models of isothermal mountains are generalized to a range of physically motivated, adiabatic equations of state. It is found that the mass ellipticity drops substantially, from ε~ 3e-4 (isothermal) to ε~ 9e-7 (non-relativistic degenerate neutrons), 6e-8 (relativistic degenerate electrons) and 1e-8 (non-relativistic degenerate electrons) (assuming a magnetic field of 3e12 G at birth). The characteristic mass M_{c} at which the magnetic dipole moment halves from its initial value is also modified, from M_{c}/M_{\sun} ~ 5e-4 (isothermal) to M_{c}/M_{\sun} ~ 2e-6, 1e-7, and 3e-8 for the above three equations of state, respectively. Similar results are obtained for a realistic, piecewise-polytropic nuclear equation of state. The adiabatic models are consistent with current LIGO upper limits, unlike the isothermal models. Updated estimates of gravitational-wave detectability are made. Monte Carlo simulations of the spin distribution of accreting millisecond pulsars including gravitational-wave stalling agree better with observations for certain adiabatic equations of state, implying that X-ray spin measurements can probe the equation of state when coupled with magnetic mountain models.
20 pages, 15 figures, to be published in MNRAS
References in corpus (20)
- Sensitivity Studies for Third-Generation Gravitational Wave Observatories
- Constraints on a phenomenologically parameterized neutron-star equation of state
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- A Debris Disk Around An Isolated Young Neutron Star
- Detecting gravitational wave emission from the known accreting neutron stars
- Accretion to Magnetized Stars through the Rayleigh-Taylor Instability: Global Three-Dimensional Simulations
- Models of crustal heating in accreting neutron stars
- Mountains on Neutron Stars: Accreted vs. Non-Accreted crusts
- Upper limit map of a background of gravitational waves
- Spin Evolution of Accreting Neutron Stars: Nonlinear Development of the R-mode Instability
- Three-dimensional Simulations of Accretion to Stars with Complex Magnetic Fields
- Order in the Chaos: Spin-up and Spin-down during the 2002 Outburst of SAX J1808.4-3658
- Burial of the polar magnetic field of an accreting neutron star. II. Hydromagnetic stability of axisymmetric equilibria
- 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
- The Spin Distribution of Millisecond X-ray Pulsars
- Three-dimensional stability of magnetically confined mountains on accreting neutron stars
- The structure of accreted neutron star crust
- Formation scenarios and mass-radius relation for neutron stars
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- Detecting gravitational waves from mountains on neutron stars in the Advanced Detector Era
- Searches for continuous gravitational waves from neutron stars: A twenty-year retrospective
- First all-sky search for continuous gravitational waves from unknown sources in binary systems
- Gravitational Waves and the Maximum Spin Frequency of Neutron Stars
- Modelling neutron star mountains
- A directed search for gravitational waves from Scorpius X-1 with initial LIGO
- Hidden Markov model tracking of continuous gravitational waves from a binary neutron star with wandering spin. II. Binary orbital phase tracking
- Are gravitational waves spinning down PSR J1023+0038?
- Asymmetric accretion and thermal `mountains' in magnetized neutron star crusts
- Continuous gravitational waves from Galactic neutron stars: demography, detectability and prospects
- Recycled pulsars with multipolar magnetospheres from accretion-induced magnetic burial
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- Population Synthesis of Accreting Neutron Stars Emitting Gravitational Waves
- New possible class of neutron stars: hot and fast non-accreting rotators
- Updated gravitational-wave upper limits on the internal magnetic field strength of recycled pulsars
- Parameter estimation of a two-component neutron star model with spin wandering
- Gravitational radiation from magnetically funnelled supernova fallback onto a magnetar
- Inferring neutron star properties with continuous gravitational waves
- Magnetically confined mountains on accreting neutron stars with multipole magnetic fields
- Gravitational waves from neutron-star mountains
- Tayler-Spruit dynamo in stably stratified rotating fluids: Application to proto-magnetars
- Relaxation by thermal conduction of a magnetically confined mountain on an accreting neutron star
- Probing the pulsar explanation of the Galactic-Center GeV excess using continuous gravitational-wave searches
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- Modelling spin-up episodes in accreting millisecond X-ray pulsars
- Cyclotron line signatures of thermal and magnetic mountains from accreting neutron stars
- Gravitational waves from rapidly rotating neutron stars
- Thermal luminosity degeneracy of magnetized neutron stars with and without hyperon cores
- Tracking hidden magnetospheric fluctuations in accretion-powered pulsars with a Kalman filter
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- Magnetically Confined Mountains on Accreting Neutron Stars in General Relativity
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