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A hypothetical time-variation of the gravitational constant $G$ would cause neutron star matter to depart from beta equilibrium, due to the changing hydrostatic equilibrium. This forces non-equilibrium beta processes to occur, which release…

Astrophysics · Physics 2009-11-11 Paula Jofre , Andreas Reisenegger , Rodrigo Fernandez

We consider, in general terms, the early thermal evolution of an isolated neutron star, i.e., during the first $10^5$ years after the supernova explosion when the cooling is driven by neutrino emission from the core. It is shown that, if…

Astrophysics · Physics 2011-04-15 Dany PAGE

We show that Geminga's surface temperature can be understood by both types of neutrino cooling scenarios, i.e, slow neutrino cooling by the modified Urca process or fast neutrino cooling by the direct Urca process or by some exotic matter,…

Astrophysics · Physics 2009-10-22 Dany Page

We study the effect of asymmetric fermionic dark matter (DM) on the thermal evolution of neutron stars (NSs). No interaction between DM and baryonic matter is assumed, except the gravitational one. Using the two-fluid formalism, we show…

High Energy Astrophysical Phenomena · Physics 2024-03-08 Afonso Ávila , Edoardo Giangrandi , Violetta Sagun , Oleksii Ivanytskyi , Constança Providência

Thermal evolution of neutron stars is known to depend on the properties of superdense matter in neutron star cores. We suggest a statistical analysis of isolated cooling middle-aged neutron stars and old transiently accreting…

Solar and Stellar Astrophysics · Physics 2015-07-16 M. V. Beznogov , D. G. Yakovlev

Driven by the loss of energy, isolated rotating neutron stars (pulsars) are gradually slowing down to lower frequencies, which increases the tremendous compression of the matter inside of them. This increase in compression changes both the…

High Energy Astrophysical Phenomena · Physics 2015-05-27 Rodrigo Negreiros , Stefan Schramm , Fridolin Weber

Dark matter particles captured in neutron stars deposit their energy as heat. This DM heating effect can be observed only if it dominates over other internal heating effects in NSs. In this work, as an example of such an internal heating…

High Energy Physics - Phenomenology · Physics 2023-09-07 Motoko Fujiwara , Koichi Hamaguchi , Natsumi Nagata , Maura E. Ramirez-Quezada

We study thermal states of transiently accreting neutron stars (with mean accretion rates $\dot{M} \sim 10^{-14}-10^{-9}$ M$_\odot$ yr$^{-1}$) determined by the deep crustal heating of accreted matter sinking into stellar interiors. We…

Astrophysics · Physics 2014-10-13 D. G. Yakovlev , K. P. Levenfish , P. Haensel

A new scenario for neutron-star cooling is proposed, based on the correspondence between pion condensation, occurring in neutron matter due to critical spin-isospin fluctuations, and the metal-insulator phase transition in a two-dimensional…

Astrophysics · Physics 2008-11-26 V. A. Khodel , J. W. Clark , M. Takano , M. V. Zverev

The effect of rotation on the cooling of neutron stars is investigated. The thermal evolution equations are solved in two dimensions with full account of general relativistic effects. It is found that rotation is particularly important in…

Astrophysics · Physics 2007-05-23 Ch. Schaab , M. K. Weigel

We study the cooling of hybrid stars coupling with spin-down. Due to the spin-down of hybrid stars, the interior density continuously increases, different neutrino reactions may be triggered(from the modified Urca process to the quark and…

High Energy Astrophysical Phenomena · Physics 2014-11-20 Kang Miao , Wang Xiao-Dong , Pan Na-Na

We study the effects of finite stellar temperatures on the oscillations of superfluid neutron stars. The importance of these effects is illustrated with a simple example of a radially pulsating general relativistic star. Two main effects…

Solar and Stellar Astrophysics · Physics 2011-06-07 E. M. Kantor , M. E. Gusakov

We examine radial oscillations of superfluid neutron stars at finite internal temperatures. For this purpose we generalize the description of relativistic superfluid hydrodynamics to the case of superfluid mixtures. We show that in a…

Astrophysics · Physics 2008-11-26 M. E. Gusakov , N. Andersson

We study the thermal evolution of neutron stars in the presence of hyperons or kaons in the core. Our results indicate that the nucleon and hyperon direct Urca processes play crucial roles for the cooling of neutron stars. The presence of…

Nuclear Theory · Physics 2016-08-09 Yeunhwan Lim , Chang Ho Hyun , Chang-Hwan Lee

Gravitational, magnetic and superfluid forces can stress the crust of an evolving neutron star. Fracture of the crust under these stresses could affect the star's spin evolution and generate high-energy emission. We study the growth of…

Astrophysics · Physics 2009-10-31 Lucia M. Franco , Bennett Link , Richard I. Epstein

The general statement that hypothetical strange (quark matter) stars cool more rapidly than neutron stars is investigated in greater detail. It is found that the direct Urca process could be forbidden not only in neutron stars but also in…

Astrophysics · Physics 2009-10-30 Christoph Schaab , Bernd Hermann , Fridolin Weber , Manfred K. Weigel

The thermal evolution of neutron stars is coupled to their spin down and the resulting changes in structure and chemical composition. This coupling correlates stellar surface temperatures with rotational state as well as time. We report an…

Astrophysics · Physics 2009-06-23 Morten Stejner , Fridolin Weber , Jes Madsen

The thermal relaxation time of neutron stars, typically defined by a sudden drop in surface temperature, is usually on the order of 10 to 100 years. In this study, we investigate neutron star thermal relaxation by incorporating nucleon…

Nuclear Theory · Physics 2025-06-24 Zhonghao Tu , Ang Li

Cooling simulations of neutron stars (NSs) are performed assuming that stellar cores consist of neutrons, protons and electrons and using realistic density profiles of superfluid critical temperatures $T_{cn}(\rho)$ and $T_{cp}(\rho)$ of…

Astrophysics · Physics 2009-11-06 A. D. Kaminker , P. Haensel , D. G. Yakovlev

There are many factors that contribute to the breaking of the spherical symmetry of a neutron star. Most notably is rotation, magnetic fields, and/or accretion of matter from companion stars. All these phenomena influence the macroscopic…

High Energy Astrophysical Phenomena · Physics 2012-05-31 Rodrigo Negreiros , Stefan Schramm , Fridolin Weber