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Low Scale Left-Right Symmetry and Naturally Small Neutrino Mass

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arxiv 1809.09115 v3 pith:UOQU5R3J submitted 2018-09-24 hep-ph

classification hep-ph
keywords massinverseleft-rightmassesmodelneutrinoseesawsymmetry
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We consider the low scale ($10$ - $100$ TeV) left-right symmetric model with "naturally" small neutrino masses generated through the inverse seesaw mechanism. The Dirac neutrino mass terms are taken to be similar to the masses of charged leptons and quarks in order to satisfy the quark-lepton similarity condition. The inverse seesaw implies the existence of fermion singlets $S$ with Majorana mass terms as well as the "left" and "right" Higgs doublets. These doublets provide the portal for $S$ and break the left-right symmetry. The inverse seesaw allows to realize a scenario in which the large lepton mixing originates from the Majorana mass matrix of $S$ fields which has certain symmetry. The model contains heavy pseudo-Dirac fermions, formed by $S$ and the right-handed neutrinos, which have masses in the $1$ GeV - $100$ TeV range and can be searched for at current and future colliders such as LHC and FCC-ee as well as in SHiP and DUNE experiments. Their contribution to neutrinoless double beta decay is unobservable. The radiative corrections to the mass of the Higgs boson and the possibility for generating the baryon asymmetry of the Universe are discussed. Modification of the model with two singlets ($S_L$ and $S_R$) per generation can provide a viable keV-scale dark matter candidate.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Gravitational Waves as a Probe of Left-Right Symmetry Breaking

    hep-ph 2019-09 conditional novelty 6.0 of 10

    With one scalar coupling tuned to about 10^-3, the minimal left-right symmetric model predicts a first-order phase transition whose gravitational waves could be seen by LISA and other planned space interferometers.

  2. Dirac neutrinos in a $SU(2)$ left-right symmetric model

    hep-ph 2019-08 conditional novelty 4.0 of 10

    An SU(2)_L x SU(2)_R x U(1)_{B-L} model with two or three scalar bidoublets and two doublets keeps neutrinos Dirac and aims to remove the small-mass fine-tuning with a third bidoublet.

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