We propose new mechanisms for small neutrino masses based on clockwork mechanism. The Standard Model neutrinos and lepton number violating operators communicate through the zero mode of clockwork gears, one of the two couplings of the zero mode is exponentially suppressed by clockwork mechanism. Including all known examples for the clockwork realization of the neutrino masses, different types of models are realized depending on the profile and chirality of the zero mode fermion. Each type of realization would have phenomenologically distinctive features with the accompanying heavy neutrinos
We present a simple scenario for gauge mediated supersymmetry breaking (GMSB) where the messengers a...
AbstractIn the framework of the seesaw mechanism, and adopting a typical form for the Dirac neutrino...
We prove that - even at a low TeV scale - the canonical seesaw mechanism can be naturally implemente...
We investigate the generation of small neutrino masses in a clockwork framework which includes Dirac...
AbstractIn pursuit of a balance between theoretical naturalness and experimental testability, we pro...
Despite the success of the Standard Model concerning theoretical predictions, there are several expe...
We formulate a viable low-scale seesaw model, where the masses for the standard model (SM) charged f...
Abstract The linear seesaw mechanism provides a simple way to generate neutrino masses. In addition ...
We discuss neutrino mass and mixing in the framework of the classic seesaw mechanism, involving righ...
We present the electroweak sector of the Standard Model, in which we will discuss interaction betwee...
AbstractWe discuss neutrino mass and mixing in the framework of the classic seesaw mechanism, involv...
In this work we show that we can generate neutrino masses through the type II seesaw mechanism worki...
We show that the seesaw mechanism may explain two independent physical parameters, small neutrino ma...
AbstractWe extend the Type I seesaw and suggest a new seesaw mechanism to generate neutrino masses w...
The triplet or type-II seesaw mechanism is the simplest way to endow neutrinos with mass in the Stan...
We present a simple scenario for gauge mediated supersymmetry breaking (GMSB) where the messengers a...
AbstractIn the framework of the seesaw mechanism, and adopting a typical form for the Dirac neutrino...
We prove that - even at a low TeV scale - the canonical seesaw mechanism can be naturally implemente...
We investigate the generation of small neutrino masses in a clockwork framework which includes Dirac...
AbstractIn pursuit of a balance between theoretical naturalness and experimental testability, we pro...
Despite the success of the Standard Model concerning theoretical predictions, there are several expe...
We formulate a viable low-scale seesaw model, where the masses for the standard model (SM) charged f...
Abstract The linear seesaw mechanism provides a simple way to generate neutrino masses. In addition ...
We discuss neutrino mass and mixing in the framework of the classic seesaw mechanism, involving righ...
We present the electroweak sector of the Standard Model, in which we will discuss interaction betwee...
AbstractWe discuss neutrino mass and mixing in the framework of the classic seesaw mechanism, involv...
In this work we show that we can generate neutrino masses through the type II seesaw mechanism worki...
We show that the seesaw mechanism may explain two independent physical parameters, small neutrino ma...
AbstractWe extend the Type I seesaw and suggest a new seesaw mechanism to generate neutrino masses w...
The triplet or type-II seesaw mechanism is the simplest way to endow neutrinos with mass in the Stan...
We present a simple scenario for gauge mediated supersymmetry breaking (GMSB) where the messengers a...
AbstractIn the framework of the seesaw mechanism, and adopting a typical form for the Dirac neutrino...
We prove that - even at a low TeV scale - the canonical seesaw mechanism can be naturally implemente...