Consequences of a strong phase transition in the dense matter equation of state for the rotational evolution of neutron stars
arXiv:1608.07049 · doi:10.1051/0004-6361/201629580
Abstract
We explore the implications of a strong first-order phase transition region in the dense matter equation of state in the interiors of rotating neutron stars, and the resulting creation of two disjoint families of neutron-star configurations (the so-called high-mass twins). We numerically obtained rotating, axisymmetric, and stationary stellar configurations in the framework of general relativity, and studied their global parameters and stability. The instability induced by the equation of state divides stable neutron star configurations into two disjoint families: neutron stars (second family) and hybrid stars (third family), with an overlapping region in mass, the high-mass twin-star region. These two regions are divided by an instability strip. Its existence has interesting astrophysical consequences for rotating neutron stars. We note that it provides a natural explanation for the rotational frequency cutoff in the observed distribution of neutron star spins, and for the apparent lack of back-bending in pulsar timing. It also straightforwardly enables a substantial energy release in a mini-collapse to another neutron-star configuration (core quake), or to a black hole.
9 pages, 7 figures, Astronomy and Astrophysics accepted
References in corpus (16)
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- Constraints on the high-density nuclear equation of state from the phenomenology of compact stars and heavy-ion collisions
- A new quark-hadron hybrid equation of state for astrophysics - I. High-mass twin compact stars
- Pulsar Wind Nebulae in the Chandra Era
- New Critical Point Induced by the Axial Anomaly in Dense QCD
- Improved Mass and Radius Constraints for Quiescent Neutron Stars in Omega Cen and NGC 6397
- Neutron stars with hyperon cores: stellar radii and EOS near nuclear density
- First all-sky search for continuous gravitational waves from unknown sources in binary systems
- critRHIC: The RHIC Low Energy Program
- Phase transitions in rotating neutron stars cores: back bending, stability, corequakes and pulsar timing
- Event simulation based on three-fluid hydrodynamics for collisions at energies available at the Dubna Nuclotron-based Ion Collider Facility and at the Facility for Antiproton and Ion Research in Darmstadt
- Neutron star mass limit at supports the existence of a CEP
- Strong first-order phase transition in a rotating neutron star core and the associated energy release
- Spin-up of the hyperon-softened accreting neutron stars
- Inferring neutron-star properties from gravitational-wave signals of binary mergers
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- Confirming the existence of twin stars in a NICER way
- Tidal deformations of hybrid stars with sharp phase transitions and elastic crusts
- Limiting magnetic field for minimal deformation of a magnetised neutron star
- The fate of twin stars on the unstable branch: implications for the formation of twin stars
- Compactness in the Thermal Evolution of Twin Stars
- Accretion-induced collapse to third family compact stars as trigger for eccentric orbits of millisecond pulsars in binaries
- Detecting dense-matter phase transition signatures in neutron star mass-radius measurements as data anomalies using normalising flows
- Investigating cannibalistic millisecond pulsar binaries using MESA: New constraints from pulsar spin and mass evolution
- Mixed Phase within the Multi-polytrope Approach to High Mass Twins
- Formation of twin compact stars in low-mass X-ray binaries: Implications on eccentric and isolated millisecond pulsar populations
- Exploring pathways to forming twin stars
- Bayesian Quantification of Observability and Equation of State of Twin Stars
- Rotating Neutron Stars with the Relativistic Ab Initio Calculations
- Ridges in rotating neutron-star properties due to first order phase transitions
- Fastest spinning millisecond pulsars: indicators for quark matter in neutron stars?
- Properties of the Object HESS J1731-347 as a Twin Compact Star
- Rapidly Spinning Massive Pulsars as an Indicator of Quark Deconfinement
- Twin stars: probe of phase transition from hadronic to quark matter
- Quantifying the Information Gain from Future High-Precision Radius Measurements for Identifying Twin Neutron Stars