We show that all correct results obtained by applying quantum field theory to neutrino oscillations can be understood in terms of a single oscillation formula. In particular, the model proposed by Grimus and Stockinger is shown to be a subcase of the model proposed by Giunti, Kim and Lee, while the new oscillation formulas proposed by Ioannisian and Pilaftsis and by Shtanov are disproved. We derive an oscillation formula without making any relativistic assumption and taking into account the dispersion, so that the result is valid for both neutrinos and mesons. This unification gives a stronger phenomenological basis to the neutrino oscillation formula. We also prove that the coherence length can be increased without bound by more accurate e...
We review some of the main results of the quantum field theoretical approach to neutrino mixing and ...
Particle oscillations following neutrino production processes are analysed within Feynman's path amp...
We demonstrate the correspondence between quantum mechanical and quantum field theoretical descripti...
We show that all correct results obtained by applying quantum field theory to neutrino oscillations ...
This report deals with the quantum field theory of particle oscillations in vacuum. We first review ...
We show in detail the general relationship between the Schrödinger equation approach to calculating ...
We show that the neutrino oscillation formula recently derived in the quantum field theory framework...
We review critically the main assumptions on which the standard theory of neutrino oscillations is b...
In order to investigate when neutrinos cease to oscillate in the framework of quantum field theory, ...
Neutrino oscillations appear to be a simple quantum mechanical phenomenon. However, a closer look at...
The neutrino oscillations in vacuum are derived in a manifestly coherent scheme. The mechanism is op...
A consistent description of neutrino oscillations requires either the quantum-mechanical (QM) wave p...
A consistent description of neutrino oscillations requires either the quantum-mechanical (QM) wave p...
We study neutrino oscillations in vacuum and in matter using field theoretical methods and wave-pack...
The best renormalizable theory in particle physics is the Standard Model. According to this model, n...
We review some of the main results of the quantum field theoretical approach to neutrino mixing and ...
Particle oscillations following neutrino production processes are analysed within Feynman's path amp...
We demonstrate the correspondence between quantum mechanical and quantum field theoretical descripti...
We show that all correct results obtained by applying quantum field theory to neutrino oscillations ...
This report deals with the quantum field theory of particle oscillations in vacuum. We first review ...
We show in detail the general relationship between the Schrödinger equation approach to calculating ...
We show that the neutrino oscillation formula recently derived in the quantum field theory framework...
We review critically the main assumptions on which the standard theory of neutrino oscillations is b...
In order to investigate when neutrinos cease to oscillate in the framework of quantum field theory, ...
Neutrino oscillations appear to be a simple quantum mechanical phenomenon. However, a closer look at...
The neutrino oscillations in vacuum are derived in a manifestly coherent scheme. The mechanism is op...
A consistent description of neutrino oscillations requires either the quantum-mechanical (QM) wave p...
A consistent description of neutrino oscillations requires either the quantum-mechanical (QM) wave p...
We study neutrino oscillations in vacuum and in matter using field theoretical methods and wave-pack...
The best renormalizable theory in particle physics is the Standard Model. According to this model, n...
We review some of the main results of the quantum field theoretical approach to neutrino mixing and ...
Particle oscillations following neutrino production processes are analysed within Feynman's path amp...
We demonstrate the correspondence between quantum mechanical and quantum field theoretical descripti...