AbstractWe study the evolution of the coupled scalar and fermion fields within the classical field theory. We examine the case of N coupled fields in (1+3)-dimensional space. The general expressions for the fields distributions are obtained. The particular case of two fields in (1+1)-dimensional space is carefully studied. We obtain the expressions for the averaged fields intensities and show that in the relativistic limit they are similar to the usual transition probabilities formulae of neutrino oscillations
PACS. 14.60.Pq – Neutrino mass and mixing. PACS. 03.70.+k – Theory of quantized fields. PACS. 03.30....
In screening models with scalar-matter conformal coupling, we study the flavor transition of neutrin...
We study in the framework of relativistic quantum mechanics the evolution of a system of two Dirac n...
AbstractWe study the evolution of the coupled scalar and fermion fields within the classical field t...
We study the evolution of mixed scalar as well as spinor fields within the context of the classical ...
We study the systems of scalar and spinor particles with mixing emitted by external classical source...
We study the mixing of different kind of fields (scalar in 0+1D, scalar in 3+1D, fermion in 3+1D) tr...
The best renormalizable theory in particle physics is the Standard Model. According to this model, n...
The results obtained on the particle mixing in Quantum Field Theory are reviewed. The Quantum Field ...
We review some of the main results of the quantum field theoretical approach to neutrino mixing and ...
We present a quantum field theoretical approach to the vacuum neutrino oscillations in curved space,...
37 pages, LaTeX. version to appear in "Annals of Physics (N.Y.)"International audienceStarting from ...
In this work we consider the method of unitarily inequivalent representations in the context of Majo...
This report deals with the quantum field theory of particle oscillations in vacuum. We first review ...
We study neutrino propagation in a curved spacetime background described by the Schwarzschild soluti...
PACS. 14.60.Pq – Neutrino mass and mixing. PACS. 03.70.+k – Theory of quantized fields. PACS. 03.30....
In screening models with scalar-matter conformal coupling, we study the flavor transition of neutrin...
We study in the framework of relativistic quantum mechanics the evolution of a system of two Dirac n...
AbstractWe study the evolution of the coupled scalar and fermion fields within the classical field t...
We study the evolution of mixed scalar as well as spinor fields within the context of the classical ...
We study the systems of scalar and spinor particles with mixing emitted by external classical source...
We study the mixing of different kind of fields (scalar in 0+1D, scalar in 3+1D, fermion in 3+1D) tr...
The best renormalizable theory in particle physics is the Standard Model. According to this model, n...
The results obtained on the particle mixing in Quantum Field Theory are reviewed. The Quantum Field ...
We review some of the main results of the quantum field theoretical approach to neutrino mixing and ...
We present a quantum field theoretical approach to the vacuum neutrino oscillations in curved space,...
37 pages, LaTeX. version to appear in "Annals of Physics (N.Y.)"International audienceStarting from ...
In this work we consider the method of unitarily inequivalent representations in the context of Majo...
This report deals with the quantum field theory of particle oscillations in vacuum. We first review ...
We study neutrino propagation in a curved spacetime background described by the Schwarzschild soluti...
PACS. 14.60.Pq – Neutrino mass and mixing. PACS. 03.70.+k – Theory of quantized fields. PACS. 03.30....
In screening models with scalar-matter conformal coupling, we study the flavor transition of neutrin...
We study in the framework of relativistic quantum mechanics the evolution of a system of two Dirac n...