AbstractWe propose a simple model for Dirac neutrinos where the smallness of neutrino mass follows from a parameter κ whose absence enhances the symmetry of the theory. Symmetry breaking is performed in a two-doublet Higgs sector supplemented by a gauge singlet scalar, realizing an accidental global U(1) symmetry. Its spontaneous breaking at the few TeV scale leads to a physical Nambu–Goldstone boson – the Diracon, denoted D – which is restricted by astrophysics and induces invisible Higgs decays such as h→DD. The scheme provides a rich, yet very simple scenario for symmetry breaking studies at colliders such as the LHC
We propose the minimal, lepton-number conserving, SU(3)xSU(2)xU(1) gauge-singlet, or phantom, extens...
We present a gauged baryon number model as an example of models where all new fermions required to c...
We present a model where Majorana neutrino mass terms are forbidden by the flavor symmetry group Del...
We propose a simple model for Dirac neutrinos where the smallness of neutrino mass follows from a pa...
AbstractSo far we have not been able to establish that, as theoretically expected, neutrinos are the...
AbstractWe extend the scalar sector of the neutrinophilic two-Higgs-doublet model, where small masse...
AbstractWe propose a simple Δ(27)⊗Z4 model where neutrinos are predicted to be Dirac fermions. The s...
A simple extension of the standard model is proposed in which all the three generations of neutrinos...
Many studies have been made on extensions of the standard model with B−L gauge symmetry. The additio...
We provide a generic framework to obtain stable dark matter along with naturally small Dirac neutrin...
We extend the visible content of the standard model (SM) with a hidden sector composed of three righ...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
The $SU(3)_c^{}\times SU(2)_L^{} \times U(1)_Y^{}$ standard model is extended by a $U(1)_{B-L}^{}$ g...
We explore a new origin of neutrino dark energy and baryon asymmetry in the universe. The neutrinos ...
A mechanism for generating massive but naturally light Dirac neutrinos is proposed. It involves comp...
We propose the minimal, lepton-number conserving, SU(3)xSU(2)xU(1) gauge-singlet, or phantom, extens...
We present a gauged baryon number model as an example of models where all new fermions required to c...
We present a model where Majorana neutrino mass terms are forbidden by the flavor symmetry group Del...
We propose a simple model for Dirac neutrinos where the smallness of neutrino mass follows from a pa...
AbstractSo far we have not been able to establish that, as theoretically expected, neutrinos are the...
AbstractWe extend the scalar sector of the neutrinophilic two-Higgs-doublet model, where small masse...
AbstractWe propose a simple Δ(27)⊗Z4 model where neutrinos are predicted to be Dirac fermions. The s...
A simple extension of the standard model is proposed in which all the three generations of neutrinos...
Many studies have been made on extensions of the standard model with B−L gauge symmetry. The additio...
We provide a generic framework to obtain stable dark matter along with naturally small Dirac neutrin...
We extend the visible content of the standard model (SM) with a hidden sector composed of three righ...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
The $SU(3)_c^{}\times SU(2)_L^{} \times U(1)_Y^{}$ standard model is extended by a $U(1)_{B-L}^{}$ g...
We explore a new origin of neutrino dark energy and baryon asymmetry in the universe. The neutrinos ...
A mechanism for generating massive but naturally light Dirac neutrinos is proposed. It involves comp...
We propose the minimal, lepton-number conserving, SU(3)xSU(2)xU(1) gauge-singlet, or phantom, extens...
We present a gauged baryon number model as an example of models where all new fermions required to c...
We present a model where Majorana neutrino mass terms are forbidden by the flavor symmetry group Del...