AbstractThe historical discovery of neutrino oscillations using solar and atmospheric neutrinos, and subsequent accelerator and reactor studies, has brought neutrino physics to the precision era. We note that CP effects in oscillation phenomena could be difficult to extract in the presence of unitarity violation. As a result upcoming dedicated leptonic CP violation studies should take into account the non-unitarity of the lepton mixing matrix. Restricting non-unitarity will shed light on the seesaw scale, and thereby guide us towards the new physics responsible for neutrino mass generation
Seesaw-type and low-scale models of neutrino masses are reviewed, along with the corresponding struc...
I review the interpretation of solar and atmospheric neutrino data in terms neutrino oscillations an...
Neutrinos are very light fermions, which have three flavour states and three mass states. Being neut...
AbstractThe historical discovery of neutrino oscillations using solar and atmospheric neutrinos, and...
If neutrinos get mass via the seesaw mechanism the mixing matrix describing neutrino oscillations ca...
Neutrino oscillations are well established and the relevant parameters determined with good precisio...
Current neutrino experiments are measuring the neutrino mixing parameters with an unprecedented accu...
If neutrinos get mass through the exchange of lepton mediators, as in seesaw schemes, the neutrino a...
Recent studies of neutrino oscillations have established the existence of finite neutrino masses an...
Non-unitary neutrino mixing implies an extra CP violating phase that can fake the leptonic Dirac CP ...
Recent studies of neutrino oscillations have established the existence of finite neutrino masses an...
I review the interpretation of solar and atmospheric neutrino data in terms neutrino oscillations an...
I review the interpretation of solar and atmospheric neutrino data in terms neutrino oscillations an...
Seesaw-type and low-scale models of neutrino masses are reviewed, along with the corresponding struc...
Seesaw-type and low-scale models of neutrino masses are reviewed, along with the corresponding struc...
Seesaw-type and low-scale models of neutrino masses are reviewed, along with the corresponding struc...
I review the interpretation of solar and atmospheric neutrino data in terms neutrino oscillations an...
Neutrinos are very light fermions, which have three flavour states and three mass states. Being neut...
AbstractThe historical discovery of neutrino oscillations using solar and atmospheric neutrinos, and...
If neutrinos get mass via the seesaw mechanism the mixing matrix describing neutrino oscillations ca...
Neutrino oscillations are well established and the relevant parameters determined with good precisio...
Current neutrino experiments are measuring the neutrino mixing parameters with an unprecedented accu...
If neutrinos get mass through the exchange of lepton mediators, as in seesaw schemes, the neutrino a...
Recent studies of neutrino oscillations have established the existence of finite neutrino masses an...
Non-unitary neutrino mixing implies an extra CP violating phase that can fake the leptonic Dirac CP ...
Recent studies of neutrino oscillations have established the existence of finite neutrino masses an...
I review the interpretation of solar and atmospheric neutrino data in terms neutrino oscillations an...
I review the interpretation of solar and atmospheric neutrino data in terms neutrino oscillations an...
Seesaw-type and low-scale models of neutrino masses are reviewed, along with the corresponding struc...
Seesaw-type and low-scale models of neutrino masses are reviewed, along with the corresponding struc...
Seesaw-type and low-scale models of neutrino masses are reviewed, along with the corresponding struc...
I review the interpretation of solar and atmospheric neutrino data in terms neutrino oscillations an...
Neutrinos are very light fermions, which have three flavour states and three mass states. Being neut...