2017A&A...600A..39B


Query : 2017A&A...600A..39B

2017A&A...600A..39B - Astronomy and Astrophysics, volume 600A, 39-39 (2017/4-1)

Consequences of a strong phase transition in the dense matter equation of state for the rotational evolution of neutron stars.

BEJGER M., BLASCHKE D., HAENSEL P., ZDUNIK J.L. and FORTIN M.

Abstract (from CDS):

Aims. 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).
Methods. We numerically obtained rotating, axisymmetric, and stationary stellar configurations in the framework of general relativity, and studied their global parameters and stability.
Results. 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.

Abstract Copyright: © ESO, 2017

Journal keyword(s): stars: neutron - equation of state - pulsars: general - pulsars: general

Simbad objects: 4

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Number of rows : 4
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 PSR J0348+0432 Psr 03 48 43.6363173480 +04 32 11.461921260           ~ 266 2
2 PSR J0737-3039A Psr 07 37 51.24720 -30 39 40.6700           ~ 278 1
3 PSR J1614-2230 Psr 16 14 36.5070 -22 30 31.207           ~ 391 1
4 PSR J1748-2446ad Psr 17 48 04.9 -24 46 04           ~ 120 1

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