Around one second after the big bang, neutrino decoupling and $e^{+-}e^-$ annihilation distorted the Fermi-Dirac spectrum of neutrino energies. Assuming neutrinos have masses and can mix, we compute the distortions using nonequilibrium thermodynamics and the Boltzmann equation. The flavor behavior of neutrinos is studied during and following the generation of the distortion
The topic of this thesis is the study of the neutrino flavor conversions in high-density environment...
We study the decoupling process of neutrinos in the early universe in the presence of three-flavour ...
International audienceWe revisit the decoupling of neutrinos in the early universe with flavour osci...
In the early universe, neutrinos are slightly coupled when electron-positron pairs annihilate transf...
In the early universe, neutrinos decouple from equilibrium with the electromagnetic plasma at a temp...
In the early universe, neutrinos are slightly coupled when electron-positron pairs annihilate transf...
Neutrino physics in the early Universe is key to our understanding of later cosmological stages, suc...
In the early universe, neutrinos are slightly coupled when electron-positron pairs annihilate transf...
We derive the equations that govern neutrino and antineutrino behavior in the early Universe. Result...
We study flavor oscillations in the early universe, assuming primordial neutrino-antineutrino asymme...
It is usually assumed that relic neutrinos possess a Fermi-Dirac distribution, acquired during therm...
The standard cosmological model predicts the existence of a cosmic neutrino background with a presen...
This thesis focuses on a finite-temperature field-theoretical treatment of neutrino oscillations in ...
We discuss the oscillations effects on neutrinos in the early Universe and update the cosmological c...
We study flavor oscillations in the early Universe, assuming primordial neutrino-antineutrino asymme...
The topic of this thesis is the study of the neutrino flavor conversions in high-density environment...
We study the decoupling process of neutrinos in the early universe in the presence of three-flavour ...
International audienceWe revisit the decoupling of neutrinos in the early universe with flavour osci...
In the early universe, neutrinos are slightly coupled when electron-positron pairs annihilate transf...
In the early universe, neutrinos decouple from equilibrium with the electromagnetic plasma at a temp...
In the early universe, neutrinos are slightly coupled when electron-positron pairs annihilate transf...
Neutrino physics in the early Universe is key to our understanding of later cosmological stages, suc...
In the early universe, neutrinos are slightly coupled when electron-positron pairs annihilate transf...
We derive the equations that govern neutrino and antineutrino behavior in the early Universe. Result...
We study flavor oscillations in the early universe, assuming primordial neutrino-antineutrino asymme...
It is usually assumed that relic neutrinos possess a Fermi-Dirac distribution, acquired during therm...
The standard cosmological model predicts the existence of a cosmic neutrino background with a presen...
This thesis focuses on a finite-temperature field-theoretical treatment of neutrino oscillations in ...
We discuss the oscillations effects on neutrinos in the early Universe and update the cosmological c...
We study flavor oscillations in the early Universe, assuming primordial neutrino-antineutrino asymme...
The topic of this thesis is the study of the neutrino flavor conversions in high-density environment...
We study the decoupling process of neutrinos in the early universe in the presence of three-flavour ...
International audienceWe revisit the decoupling of neutrinos in the early universe with flavour osci...