Javascript must be enabled to continue!
Sterile Neutrinos as Dark Matter: Alternative Production Mechanisms in the Early Universe
View through CrossRef
We study various production mechanisms of sterile neutrinos in the early universe beyond and within the standard model. We obtain the quantum kinetic equations for production and the distribution function of sterile-like neutrinos at freeze-out, from which we obtain free streaming lengths, equations of state and coarse grained phase space densities. In a simple extension beyond the standard model, in which neutrinos are Yukawa coupled to a Higgs-like scalar, we derive and solve the quantum kinetic equation for sterile production and analyze the freeze-out conditions and clustering properties of this dark matter constituent. We argue that in the mass basis, standard model processes that produce active neutrinos also yield sterile-like neutrinos, leading to various possible production channels. Hence, the final distribution function of sterile-like neutrinos is a result of the various kinematically allowed production processes in the early universe. As an explicit example, we consider production of light sterile neutrinos from pion decay after the QCD phase transition, obtaining the quantum kinetic equation and the distribution function at freeze-out. A sterile-like neutrino with a mass in the keV range produced by this process is a suitable warm dark matter candidate with a free-streaming length of the order of few kpc consistent with cores in dwarf galaxies.
Title: Sterile Neutrinos as Dark Matter: Alternative Production Mechanisms in the Early Universe
Description:
We study various production mechanisms of sterile neutrinos in the early universe beyond and within the standard model.
We obtain the quantum kinetic equations for production and the distribution function of sterile-like neutrinos at freeze-out, from which we obtain free streaming lengths, equations of state and coarse grained phase space densities.
In a simple extension beyond the standard model, in which neutrinos are Yukawa coupled to a Higgs-like scalar, we derive and solve the quantum kinetic equation for sterile production and analyze the freeze-out conditions and clustering properties of this dark matter constituent.
We argue that in the mass basis, standard model processes that produce active neutrinos also yield sterile-like neutrinos, leading to various possible production channels.
Hence, the final distribution function of sterile-like neutrinos is a result of the various kinematically allowed production processes in the early universe.
As an explicit example, we consider production of light sterile neutrinos from pion decay after the QCD phase transition, obtaining the quantum kinetic equation and the distribution function at freeze-out.
A sterile-like neutrino with a mass in the keV range produced by this process is a suitable warm dark matter candidate with a free-streaming length of the order of few kpc consistent with cores in dwarf galaxies.
Related Results
Searches for connections between dark matter and high-energy neutrinos with IceCube
Searches for connections between dark matter and high-energy neutrinos with IceCube
Abstract
In this work, we present the results of searches for signatures of dark matter decay or annihilation into Standard Model particles, ...
Unified Physics and Cosmology: the Theory of Everything
Unified Physics and Cosmology: the Theory of Everything
Quantum Mechanics and General Relativity appears to be incompatible because we are using the wrong model of the universe.
Nature does not use two separate rule-bo...
Unified Physics and Cosmology: the Theory of Everything
Unified Physics and Cosmology: the Theory of Everything
Quantum Mechanics and General Relativity appears to be incompatible because we are using the wrong model of the universe.
Nature does not use two separate rule-bo...
From T2K to Hyper-Kamiokande : neutrino oscillation analysis and preparation of the time synchronization system
From T2K to Hyper-Kamiokande : neutrino oscillation analysis and preparation of the time synchronization system
De T2K à Hyper-Kamiokande : analyse d’oscillation des neutrinos et préparation du système de synchronisation en temps
Les neutrinos sont les particules du Modèle St...
A common origin for the QCD axion and sterile neutrinos from SU(5) strong dynamics
A common origin for the QCD axion and sterile neutrinos from SU(5) strong dynamics
Abstract
We identify the QCD axion and right-handed (sterile) neutrinos as bound states of an SU(5) chiral gauge theory with Peccei-Quinn (PQ) symmetry arising...
Supersymmetry Via EDM (Electric Dipole Moment)
Supersymmetry Via EDM (Electric Dipole Moment)
PRELIMINARY NOTE #1 -
My approach may be called quantum-gravitational. I take "educated guesses", using the present state of scientific knowledge, at what might be revealed by a f...
Faint and Extended Galaxies as Probes for Understanding the Nature of Dark Matter Particles
Faint and Extended Galaxies as Probes for Understanding the Nature of Dark Matter Particles
Dark matter remains one of the most enigmatic components of the universe, constituting approximately 27% of its total mass-energy content, yet its fundamental nature is still poorl...
Etude des oscillations de neutrinos atmosphériques avec le télescope à neutrinos ANTARES
Etude des oscillations de neutrinos atmosphériques avec le télescope à neutrinos ANTARES
Les neutrinos sont probablement les particules les plus particulières connues à ce jours. Dès la première hypothèse sur leur existence, en 1930, jusqu'à aujourd'hui, ils ont incité...

