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Related papers: Neutron Stars as Dark Matter Probes

200 papers

Due to their extreme density and low temperature, neutron stars (NS) are efficient probes to unveil interactions between standard model and dark matter (DM) particles. From elastic scatterings on NS material, DM can get gravitationally…

High Energy Physics - Phenomenology · Physics 2019-05-28 Raghuveer Garani , Yoann Genolini , Thomas Hambye

We calculate the number of dark matter particles that a neutron star accumulates over its lifetime as it rotates around the center of a galaxy, when the dark matter particle is a self-interacting boson but does not self-annihilate. We take…

High Energy Physics - Phenomenology · Physics 2015-06-03 Tolga Guver , Arif Emre Erkoca , Mary Hall Reno , Ina Sarcevic

A comprehensive microscopic study of the properties of bulk matter at densities just below nuclear saturation $\rho_s = 2.5 \sim 10^{14}$ g cm$^{-3}$, zero and finite temperature and high neutron fraction, is outlined, and preliminary…

Astrophysics · Physics 2008-12-18 W. G. Newton

Dark matter particles in the galactic halo can scatter off particles in celestial bodies such as stars or planets, lose energy and become gravitationally trapped. In this process, an accumulation of dark matter in the center of celestial…

High Energy Astrophysical Phenomena · Physics 2019-08-21 Giovanni Renzi

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

A protoneutron star is formed immediately after the gravitational collapse of the core of a massive star. At birth, the hot and high density matter in such a star contains a large number of neutrinos trapped during collapse. Trapped…

Nuclear Theory · Physics 2022-02-23 M. Prakash , S. Reddy , J. M. Lattimer , P. J. Ellis

Particulate dark matter captured by a population of neutron stars distributed around the galactic center while annihilating through long-lived mediators can give rise to an observable neutrino flux. We examine the prospect of an idealised…

High Energy Physics - Phenomenology · Physics 2024-07-31 Debajit Bose , Tarak Nath Maity , Tirtha Sankar Ray

The thermal nucleation of quark matter bubbles inside neutron stars is examined for various temperatures which the star may realistically encounter during its lifetime. It is found that for a bag constant less than a critical value, a very…

Astrophysics · Physics 2009-12-30 Michael L. Olesen , Jes Madsen

Searches for dark matter imprints are one of the most active areas of current research. We focus here on light fields with mass $m_B$, such as axions and axion-like candidates. Using perturbative techniques and full-blown nonlinear…

General Relativity and Quantum Cosmology · Physics 2015-09-15 Richard Brito , Vitor Cardoso , Hirotada Okawa

Recent experimental observation suggests that neutron decay is always accompanied by emission of electron while in 1% of cases proton is not emitted. We develop a scenario kinematically compatible with experimental observation, where…

Nuclear Theory · Physics 2025-07-24 M. Veselský , V. Petousis , Ch. C. Moustakidis , M. Vikiaris

We discuss the prospects for detection of high energy neutrinos from dark matter annihilation at the Galactic centre. Despite the large uncertainties associated with our poor knowledge of the distribution of dark matter in the innermost…

Astrophysics · Physics 2009-11-10 Gianfranco Bertone , Emmanuel Nezri , Jean Orloff , Joseph Silk

In a close encounter with a neutron star, a primordial black hole can get gravitationally captured by depositing a considerable amount of energy into nonradial stellar modes of very high angular number $l$. If the neutron-star equation of…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-18 Paolo Pani , Abraham Loeb

With central densities way above the density of atomic nuclei, neutron stars contain matter in one of the densest forms found in the universe. Depending of the density reached in the cores of neutron stars, they may contain stable phases of…

Astrophysics · Physics 2010-12-06 Fridolin Weber , Matthew Meixner , Rodrigo P. Negreiros , Manuel Malheiro

We study the dark matter effects on the nuclear matter parameters characterising the equation of states of super dense neutron-rich nucleonic-matter. The observables of the nuclear matter, i.e. incompressibility, symmetry energy and its…

Nuclear Theory · Physics 2021-11-29 H. C. Das , Ankit Kumar , Bharat Kumar , S. K. Biswal , Takashi Nakatsukasa , Ang Li , S. K. Patra

We calculate the extent to which collisionless dark matter impacts the stability of supermassive stars $(M\gtrsim10^4\,M_\odot)$. We find that, depending on the star's mass, a dark matter content in excess of ${\sim}1\%$ by mass throughout…

Cosmology and Nongalactic Astrophysics · Physics 2024-10-24 Kyle S. Kehrer , George M. Fuller

In this paper, we have compared two different accretion mechanisms of dark matter particles by a canonical neutron star with $M=1.4~M_{\odot}$ and $R=10~{\rm km}$, and shown the effects of dark matter heating on the surface temperature of…

High Energy Physics - Phenomenology · Physics 2017-05-25 Xi Huang , Jian-Feng Liu , Wei-Hua Wang , Quan Cheng , Xiao-Ping Zheng

The maximum mass of a neutron star is generally determined by the equation of state of the star material. In this study, we take into account dark matter particles, assumed to behave like fermions with a free parameter to account for the…

Solar and Stellar Astrophysics · Physics 2012-08-21 Ang Li , Feng Huang , Ren-Xin Xu

We discuss the issue on dark matter capture by neutron stars, in particular the process of dark matter thermalization, by which the scattering cross section and the mass of dark matter can be constrained. At first, we evaluate the…

High Energy Physics - Phenomenology · Physics 2015-11-23 Yusuke Sanematsu , Motoi Tachibana

The unknown state of matter at ultra-high density, large proton/neutron number asymmetry, and low temperature is a major long-standing problem in modern physics. Neutron stars provide the only known setting in the Universe where matter in…

The presence of quark matter in neutron star interiors may have distinctive signatures in basic observables such as (i) masses and radii [1], (ii) surface temperatures versus age [2], (iii) spin-down rates of milli-second pulsars [3], and…

High Energy Physics - Phenomenology · Physics 2009-11-07 M. Prakash