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We report the results of the spectral analysis of two observations of the Vela pulsar with the Chandra X-ray observatory. The spectrum of the pulsar does not show statistically significant spectral lines in the observed 0.25-8.0 keV band.…

Astrophysics · Physics 2016-08-30 G. G. Pavlov , V. E Zavlin , D. Sanwal , V. Burwitz , G. Garmire

We perform a systematic study of the dependence of the r-mode phenomenology in normal fluid pulsar neutron stars on the symmetry energy slope parameter $L$. An essential ingredient in this study is the bulk viscosity, which is evaluated…

Nuclear Theory · Physics 2020-06-30 T. R. Routray , S. P. Pattnaik , C. Gonzalez-Boquera , X. Viñas , M. Centelles , B. Behera

We show that within a recently developed nonlocal chiral quark model the critical density for a phase transition to color superconducting quark matter under neutron star conditions can be low enough for these phases to occur in compact star…

Astrophysics · Physics 2009-11-10 Hovik Grigorian , David Blaschke , Dmitri Voskresensky

We studied thermal evolution of isolated neutron stars (NSs) including the pion condensation core, with an emphasis on the stiffness of equation of state (EOS). Many temperature observations can be explained by the minimal cooling scenario…

High Energy Astrophysical Phenomena · Physics 2022-04-06 Akira Dohi , Helei Liu , Tsuneo Noda , Masa-aki Hashimoto

We calculate the emissivity for the direct URCA process in strongly magnetized, degenerate matter in neutron stars, under $\beta $-equilibrium. We show that, if the magnetic field is large enough for protons and electrons to be confined to…

Astrophysics · Physics 2009-10-30 L. B. Leinson , A. Perez

We find a new mechanism of neutron star radiation wherein radiation is produced by the stellar interior. The source of radiation is oscillating neutron vortices in the superfluid core of a rotating neutron star. Thermally excited helical…

Statistical Mechanics · Physics 2007-05-23 Anatoly A. Svidzinsky

Neutron stars are some of the densest manifestations of massive objects in the universe. They are ideal astrophysical laboratories for testing theories of dense matter physics and provide connections among nuclear physics, particle physics…

Astrophysics · Physics 2011-05-05 J. M. Lattimer , M. Prakash

We study the thermal structure of neutron stars with magnetized envelopes composed of accreted material, using updated thermal conductivities of plasmas in quantizing magnetic fields, as well as equation of state and radiative opacities for…

Astrophysics · Physics 2009-11-07 A. Y. Potekhin , D. G. Yakovlev , G. Chabrier , O. Y. Gnedin

Observations of cooling neutron stars allow to measure photospheric radii and to constrain the equation of state of nuclear matter at high densities. In this paper we concentrate on neutron stars, which show thermal (photospheric) X-ray…

Astrophysics · Physics 2007-05-23 J. E. Truemper

We calculate the superfluid density of nucleons in disordered pasta phases in the inner crust of neutron stars using an effective medium approach which parallels that previously used for calculating the electrical conductivity of…

Nuclear Theory · Physics 2022-06-01 Zhao-Wen Zhang , C. J. Pethick

Pulsars are neutron stars, stellar corpses left over after supernova explosions of stars about ten times as massive as our Sun, with densities comparable to the atomic nucleus', spinning with periods from few milliseconds up to few seconds,…

The direct URCA process of rapid neutrino emission can occur in nonuniform nuclear pasta phases that are expected in the inner crust of neutron stars. Here, the periodic potential for a nucleon in nuclear pasta allows momentum conservation…

Nuclear Theory · Physics 2020-10-14 Zidu Lin , Matthew E. Caplan , Charles J. Horowitz , Cecilia Lunardini

(Abridged) We here study the structure of a hyperaccretion disk around a neutron star. We consider a steady-state hyperaccretion disk around a neutron star, and as a reasonable approximation, divide the disk into two regions, which are…

Astrophysics · Physics 2009-11-13 Dong Zhang , Z. G. Dai

The inner crust of a neutron star is a superfluid and inhomogeneous system, consisting of a lattice of nuclei immersed in a sea of neutrons. We perform a quantum calculation of the associated pairing gap and compare it to the results one…

Nuclear Theory · Physics 2009-09-25 F. Barranco , R. A. Broglia , H. Esbensen , E. Vigezzi

During the spin-up phase of a large pulsar glitch - a sudden decrease of the rotational period of a neutron star - the angular velocity of the star may overshoot, namely reach values greater than that observed for the new post-glitch…

High Energy Astrophysical Phenomena · Physics 2020-04-29 Pierre Pizzochero , Alessandro Montoli , Marco Antonelli

The standard cooling scenario in the presence of nucleon superfluidity fits rather well to the observation of the neutron stars. It implies that the stellar cooling arguments could place a stringent constraint on the properties of novel…

High Energy Physics - Phenomenology · Physics 2021-07-07 Deog Ki Hong , Chang Sub Shin , Seokhoon Yun

Considering four known pulsars J1906+0746, J1933-6211, J2043+1711 and the Vela pulsar, we study the scenario of dark matter (DM) capture in neutron stars (NSs). For the purpose we choose four well-known relativistic mean field models to…

High Energy Physics - Phenomenology · Physics 2024-02-22 Debashree Sen , Atanu Guha

If deconfined quark matter exists inside compact stars, the primary cooling mechanism is neutrino radiation via the direct Urca processes d->u+e+antinu_e and u+e->d+nu_e. Below a critical temperature, T_c, quark matter forms a colour…

Nuclear Theory · Physics 2010-03-04 Prashanth Jaikumar , Craig D. Roberts , Armen Sedrakian

Various neutron star (NS) models correspond to an unrealistic mass range $\leq 0.5M_\odot$ for the Vela pulsar, if the observational constraints of the glitch healing parameter in the starquake model ($Q = I_{\rm core}/I_{\rm total} \leq…

Astrophysics · Physics 2009-11-13 P. S. Negi

I review attempts made to determine the properties of neutron stars. The focus is on the maximum mass that a neutron star can have, or, conversely, the minimum mass required for the formation of a black hole. There appears to be only one…

Astrophysics · Physics 2009-10-31 M. H. van Kerkwijk