Instability windows and evolution of rapidly rotating neutron stars
arXiv:1310.8103 · doi:10.1103/PhysRevLett.112.151101
Abstract
We consider an instability of rapidly rotating neutron stars in low-mass X-ray binaries (LMXBs) with respect to excitation of r-modes (which are analogous to Earth's Rossby waves controlled by the Coriolis force). We argue that finite temperature effects in the superfluid core of a neutron star lead to a resonance coupling and enhanced damping (and hence stability) of oscillation modes at certain stellar temperatures. Using a simple phenomenological model we demonstrate that neutron stars with high spin frequency may spend a substantial amount of time at these `resonance' temperatures. This finding allows us to explain puzzling observations of hot rapidly rotating neutron stars in LMXBs and to predict a new class of hot, non-accreting, rapidly rotating neutron stars, some of which may have already been observed and tentatively identified as quiescent LMXB (qLMXB) candidates. We also impose a new theoretical limit on the neutron star spin frequency, explaining the cut-off spin frequency ~730 Hz, following from the statistical analysis of accreting millisecond X-ray pulsars. Besides explaining the observations, our model provides a new tool to constrain superdense matter properties comparing measured and theoretically predicted resonance temperatures.
7 pages, 3 figures, 1 table, accepted for publication in PRL. Short version of arXiv:1305.3825; discussion of a possible new class of neutron stars is added
References in corpus (14)
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Detecting gravitational wave emission from the known accreting neutron stars
- Shear viscosity in neutron star cores
- Cooling of the crust in the neutron star low-mass X-ray binary MXB 1659-29
- Shear viscosity of neutron matter from realistic nucleon-nucleon interactions
- The entrainment matrix of a superfluid neutron-proton mixture at a finite temperature
- Temperature-dependent pulsations of superfluid neutron stars
- The Transient Gravitational-Wave Sky
- Nonlinear Development of the R Mode Instability and the Maximum Rotation Rate of Neutron Stars
- The Spin Distribution of Millisecond X-ray Pulsars
- The relativistic entrainment matrix of a superfluid nucleon-hyperon mixture. II. Effect of finite temperatures
- Transport coefficients of nuclear matter in neutron star cores
- Temperature effects in pulsating superfluid neutron stars
- Transport equations and linear response of superfluid Fermi mixtures in neutron stars
Cited by in corpus (41)
- QCD and strongly coupled gauge theories: challenges and perspectives
- Rotating Stars in Relativity
- Searches for Continuous-Wave Gravitational Radiation
- Superfluidity and Superconductivity in Neutron Stars
- R-modes in neutron stars: Theory and observations
- Neutron stars structure in the context of massive gravity
- Explaining observations of rapidly rotating neutron stars in LMXBs
- Viscosity of neutron star matter and -modes in rotating pulsars
- Are gravitational waves spinning down PSR J1023+0038?
- Chandra studies of the globular cluster 47 Tucanae: A deeper X-ray source catalogue, five new X-ray counterparts to millisecond radio pulsars, and new constraints to r-mode instability window
- Gravitational wave emission from oscillating millisecond pulsars
- R-modes and neutron star recycling scenario
- Quasi-normal modes of superfluid neutron stars
- Constraining neutron superfluidity with -mode physics
- Relativistic formulation of the Hall-Vinen-Bekarevich-Khalatnikov superfluid hydrodynamics
- New possible class of neutron stars: hot and fast non-accreting rotators
- X-ray bounds on the r-mode amplitude in millisecond pulsars
- S pairing gaps, chemical potential and entrainment matrix in superfluid neutron-star cores for the Brussels-Montreal functionals
- Temperature-dependent r-modes in superfluid neutron stars stratified by muons
- Strengthening the bounds on the r-mode amplitude with X-ray observations of millisecond pulsars
- Observational signatures of neutron stars in low-mass X-ray binaries climbing a stability peak
- Discovery of a 584.65 Hz Burst Oscillation in the Low Mass X-Ray Binary 4U 1730--22
- The entrainment matrix of a superfluid nucleon mixture at finite temperatures
- R-mode instability of strange stars and observations of neutron stars in LMXBs
- Nonlinear approach to the entrainment matrix of superfluid nucleon mixture at zero temperature
- Gravitational waves from rapidly rotating neutron stars
- Where Are the r-modes? Chandra Observations of Millisecond Pulsars
- Temperature-dependent oscillation modes in rotating superfluid neutron stars
- Resonance suppression of the r-mode instability in superfluid neutron stars: Accounting for muons and entrainment
- Differential rotation and r-modes in magnetized neutron stars
- Whispers from the edge of physics
- r-mode instability of neutron stars in low-mass X-ray binaries: effects of Fermi surface depletion and superfluidity of dense matter
- Long term evolution of CFS-unstable neutron stars and role of differential rotation on short time-scales
- Colloquium: Multimessenger astronomy with continuous gravitational waves and future detectors
- Observability of HOFNARs with SRG/eROSITA
- Search for continuous gravitational waves from unknown neutron stars in binary systems with long orbital periods in O3 data
- R-mode instability in compact stars
- Instability windows of relativistic r-modes in stably stratified neutron stars with hyperonic cores
- Magnetic field amplification by the r-mode instability
- Constraints on r-modes and mountains on millisecond neutron stars in binary systems
- Multicomponent Superfluids and Superconductors in Dense Nuclear and Quark Matter