Abstract A Standard Model extension with two Majorana neutrinos can explain the measured neutrino masses and mixings, and also account for the matter-antimatter asymmetry in a region of parameter space that could be testable in future experiments. The testability of the model relies to some extent on its minimality. In this paper we address the possibility that the model might be extended by extra generic new physics which we parametrize in terms of a low-energy effective theory. We consider the effects of the operators of the lowest dimensionality, d = 5, and evaluate the upper bounds on the coefficients so that the predictions of the minimal model are robust. One of the operators gives a new production mechanism for the heavy neutrinos at...
We study neutrino masses in the framework of the supersymmetric inverse seesaw model. Different from...
Knowing how the mass generation of neutrinos is realized would help us to understand a lot more abou...
The existence of the neutrino mass has been established by the neutrino oscillation experiments. The...
A Standard Model extension with two Majorana neutrinos can explain the measured neutrino masses and ...
We consider theories where the Standard Model (SM) neutrinos acquire masses through the seesaw mecha...
The Standard Model of particle physics (SM) is presently the best description of nature at small dis...
The Standard Model of particle physics (SM) is presently the best description of nature at small dis...
We point out that the minimal seesaw model can provide a natural framework to accommodate tiny neutr...
Abstract Heavy neutrinos with masses below the electroweak scale can simultaneously generate the lig...
The seesaw model of heavy and light Majorana neutrinos and its low-energy effective theory are studi...
The existence of the tiny neutrino mass and the flavor mixing can be naturally explained by type I S...
While all models of Majorana neutrino masses lead to the same dimension five effective operator, whi...
Abstract The linear seesaw mechanism provides a simple way to generate neutrino masses. In addition ...
After outlining some popular ways to go beyond the standard model so as to generate non-zero but tin...
The neutrino masses and flavor mixings, which are missing in the Standard Model (SM), can be natural...
We study neutrino masses in the framework of the supersymmetric inverse seesaw model. Different from...
Knowing how the mass generation of neutrinos is realized would help us to understand a lot more abou...
The existence of the neutrino mass has been established by the neutrino oscillation experiments. The...
A Standard Model extension with two Majorana neutrinos can explain the measured neutrino masses and ...
We consider theories where the Standard Model (SM) neutrinos acquire masses through the seesaw mecha...
The Standard Model of particle physics (SM) is presently the best description of nature at small dis...
The Standard Model of particle physics (SM) is presently the best description of nature at small dis...
We point out that the minimal seesaw model can provide a natural framework to accommodate tiny neutr...
Abstract Heavy neutrinos with masses below the electroweak scale can simultaneously generate the lig...
The seesaw model of heavy and light Majorana neutrinos and its low-energy effective theory are studi...
The existence of the tiny neutrino mass and the flavor mixing can be naturally explained by type I S...
While all models of Majorana neutrino masses lead to the same dimension five effective operator, whi...
Abstract The linear seesaw mechanism provides a simple way to generate neutrino masses. In addition ...
After outlining some popular ways to go beyond the standard model so as to generate non-zero but tin...
The neutrino masses and flavor mixings, which are missing in the Standard Model (SM), can be natural...
We study neutrino masses in the framework of the supersymmetric inverse seesaw model. Different from...
Knowing how the mass generation of neutrinos is realized would help us to understand a lot more abou...
The existence of the neutrino mass has been established by the neutrino oscillation experiments. The...