Explaining observations of rapidly rotating neutron stars in LMXBs
arXiv:1305.3825 · doi:10.1103/PhysRevD.90.063001
Abstract
In a previous paper [M. E. Gusakov, A. I. Chugunov, and E. M. Kantor, Phys. Rev. Lett. 112, 151101 (2014)], we introduced a new scenario that explains the existence of rapidly rotating warm neutron stars (NSs) observed in low-mass X-ray binaries (LMXBs). Here it is described in more detail. The scenario takes into account the interaction between superfluid inertial modes and the normal (quadrupole) -mode, which can be driven unstable by Chandrasekhar-Friedman-Schutz (CFS) mechanism. This interaction can only occur at some fixed "resonance" stellar temperatures; it leads to formation of the "stability peaks" which stabilize a star in the vicinity of these temperatures. We demonstrate that a NS in LMXB spends a substantial fraction of time on the stability peak, that is, in the region of stellar temperatures and spin frequencies, that has been previously thought to be CFS unstable with respect to excitation of -modes. We also find that the spin frequencies of NSs are limited by the CFS instability of normal (octupole) -mode rather than by -mode. This result agrees with the predicted value of the cutoff spin frequency Hz in the spin distribution of accreting millisecond X-ray pulsars. In addition, we analyze evolution of a NS after the end of the accretion phase and demonstrate that millisecond pulsars can be born in LMXBs within our scenario. Besides millisecond pulsars, our scenario also predicts a new class of LMXB descendants - hot and rapidly rotating nonaccreting NSs ("hot widows"/HOFNARs). Further comparison of the proposed theory with observations of rotating NSs can impose new important constraints on the properties of superdense matter.
Updated and extended version accepted for publication in Phys. Rev. D; discussion of a NS fate after the LMXB stage (Sec. VII and Appendix D) is added; 32 pages, 9 figures, 1 table
References in corpus (30)
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Formation and evolution of compact binaries in globular clusters: II. Binaries with neutron stars
- Detecting gravitational wave emission from the known accreting neutron stars
- Models of crustal heating in accreting neutron stars
- Spinning down newborn neutron stars: nonlinear development of the r-mode instability
- Shear viscosity in neutron star cores
- Spin Evolution of Accreting Neutron Stars: Nonlinear Development of the R-mode Instability
- New constraints on the cooling of the Central Compact Object in Cas A
- Cooling of the crust in the neutron star low-mass X-ray binary MXB 1659-29
- Bulk viscosity of superfluid neutron stars
- Implications of an r-mode in XTE J1751-305: Mass, radius and spin evolution
- Shear viscosity of neutron matter from realistic nucleon-nucleon interactions
- Ekman layer damping of r-modes revisited
- The entrainment matrix of a superfluid neutron-proton mixture at a finite temperature
- Temperature-dependent pulsations of superfluid neutron stars
- Occurrence of Hyperon Superfluidity in Neutron Star Cores
- Probing the Crust of the Neutron Star in EXO 0748-676
- Nonlinear Development of the R Mode Instability and the Maximum Rotation Rate of Neutron Stars
- The Transient Gravitational-Wave Sky
- Instability windows and evolution of rapidly rotating neutron stars
- Heat blanketing envelopes and thermal radiation of strongly magnetized neutron stars
- On the oscillations of dissipative superfluid 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
- X-ray and -ray Studies of the Millisecond Pulsar and Possible X-ray Binary/Radio Pulsar Transition Object PSR J1723-2837
- Transport coefficients of nuclear matter in neutron star cores
- Temperature effects in pulsating superfluid neutron stars
- Quasi-normal modes of superfluid neutron stars
- Transport equations and linear response of superfluid Fermi mixtures in neutron stars
- Joule heating in high magnetic field pulsars
Cited by in corpus (34)
- The Spin Distribution of Fast Spinning Neutron Stars in Low Mass X-Ray Binaries: Evidence for Two Sub-Populations
- Superfluidity and Superconductivity in Neutron Stars
- R-modes in neutron stars: Theory and observations
- A new mechanism for saturating unstable r-modes in neutron stars
- Composition temperature-dependent g-modes in superfluid neutron stars
- Viscosity of neutron star matter and -modes in rotating pulsars
- 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
- Bulk viscosity in neutron stars with hyperon cores
- R-modes and neutron star recycling scenario
- -mode Stability of GW190814's Secondary Component as a Supermassive and Superfast Pulsar
- Constraining neutron superfluidity with -mode physics
- New possible class of neutron stars: hot and fast non-accreting rotators
- Relativistic formulation of the Hall-Vinen-Bekarevich-Khalatnikov superfluid hydrodynamics
- Temperature-dependent r-modes in superfluid neutron stars stratified by muons
- XMM-Newton detection and spectrum of the second fastest spinning pulsar PSR J0952-0607
- Observational signatures of neutron stars in low-mass X-ray binaries climbing a stability peak
- Signatures of quark deconfinement through the r-modes of twin stars
- Discovery of a 584.65 Hz Burst Oscillation in the Low Mass X-Ray Binary 4U 1730--22
- Diffusion as a leading dissipative mechanism in superconducting neutron stars
- The r-mode instability windows of strange stars
- Influence of the nuclear matter equation of state on the r-mode instability using the finite-range simple effective interaction
- Resonance suppression of the r-mode instability in superfluid neutron stars: Accounting for muons and entrainment
- Temperature-dependent oscillation modes in rotating superfluid neutron stars
- Differential rotation and r-modes in magnetized neutron stars
- Instability windows of relativistic r-modes
- Evolution of newborn rapidly rotating magnetars: effects of r-mode and fall-back accretion
- Long term evolution of CFS-unstable neutron stars and role of differential rotation on short time-scales
- Gravitational waves from r-mode oscillations of stochastically accreting neutron stars
- Search for continuous gravitational waves from unknown neutron stars in binary systems with long orbital periods in O3 data
- Observability of HOFNARs with SRG/eROSITA
- Viscous damping of r-modes and emission of gravitational waves
- Magnetic field amplification by the r-mode instability
- Instability windows of relativistic r-modes in stably stratified neutron stars with hyperonic cores
- Constraints on r-modes and mountains on millisecond neutron stars in binary systems