The neutrino mass hierarchy, i.e., whether the ν_3 neutrino mass eigenstate is heavier or lighter than the ν_1 and ν_2 mass eigenstates, is one of the remaining undetermined fundamental features of the neutrino Standard Model. Its determination would represent an important step in the formulation of the generalized model, and would have a profound impact on the quest of the nature of neutrinos (Dirac or Majorana) and the search for a theory of flavor. In this review, we summarize the status of experimental and theoretical work in this field and explore the future opportunities that emerge in light of the recently discovered non-zero and relatively large third neutrino mixing angle θ_(13)
We present an overview of recent progress in the theoretical and phenomenological studies of neutrin...
In recent years exciting experimental discoveries have shown that neutrino flavors oscillate, and he...
Using recent data on neutrino oscillations, we argue that a hierarchical solution for neutrino masse...
The neutrino mass hierarchy, i.e., whether the ν_3 neutrino mass eigenstate is heavier or lighter th...
The unknown neutrino mass hierarchy—whether the ν_3 mass eigenstate is the heaviest or the lightest...
The unknown neutrino mass hierarchy—whether the ν_3 mass eigenstate is the heaviest or the lightest...
The Dirac masses of neutrinos can exhibit a strong hierarchy even if the Majorana masses of the righ...
This paper aims at solving several open questions in current neutrino physics: the neutrino mass hie...
The experiments with solar, atmospheric, reactor and accelerator neutrinos have provided compelling ...
The experiments with solar, atmospheric, reactor and accelerator neutrinos have provided compelling ...
The current status of neutrino physics is reviewed with some near fu-ture perspective. After recolle...
We review some fundamental aspects of the theory of neutrino masses and mixing. The results of neutr...
We build a model to describe neutrinos based on strict hierarchy, incorporating as much as possible,...
Massive neutrinos have been widely studied for the past twenty years as the understanding of neutri...
Massive neutrinos have been widely studied for the past twenty years as the understanding of neutri...
We present an overview of recent progress in the theoretical and phenomenological studies of neutrin...
In recent years exciting experimental discoveries have shown that neutrino flavors oscillate, and he...
Using recent data on neutrino oscillations, we argue that a hierarchical solution for neutrino masse...
The neutrino mass hierarchy, i.e., whether the ν_3 neutrino mass eigenstate is heavier or lighter th...
The unknown neutrino mass hierarchy—whether the ν_3 mass eigenstate is the heaviest or the lightest...
The unknown neutrino mass hierarchy—whether the ν_3 mass eigenstate is the heaviest or the lightest...
The Dirac masses of neutrinos can exhibit a strong hierarchy even if the Majorana masses of the righ...
This paper aims at solving several open questions in current neutrino physics: the neutrino mass hie...
The experiments with solar, atmospheric, reactor and accelerator neutrinos have provided compelling ...
The experiments with solar, atmospheric, reactor and accelerator neutrinos have provided compelling ...
The current status of neutrino physics is reviewed with some near fu-ture perspective. After recolle...
We review some fundamental aspects of the theory of neutrino masses and mixing. The results of neutr...
We build a model to describe neutrinos based on strict hierarchy, incorporating as much as possible,...
Massive neutrinos have been widely studied for the past twenty years as the understanding of neutri...
Massive neutrinos have been widely studied for the past twenty years as the understanding of neutri...
We present an overview of recent progress in the theoretical and phenomenological studies of neutrin...
In recent years exciting experimental discoveries have shown that neutrino flavors oscillate, and he...
Using recent data on neutrino oscillations, we argue that a hierarchical solution for neutrino masse...