We explore the neutrino portal dark matter (DM) at its minimum of field content having two dark sector particles coupled to a right-handed neutrino. Assuming the feeble nature of their interactions with the standard model (SM) particles, we analyze the freeze-in production of the observed DM relic density characterized by three different categories depending on the major production mechanisms. The portal provides interesting signatures at the neutrino detectors like KamLAND, Super-Kamiokande and IceCube, from a very late decay of the scalar DM to the fermion DM and the SM neutrino. Such neutrino flux spectrum from the cosmic and galactic origins can produce anomalous signals at future experiments
We investigate a beyond standard model (SM) portal scenario for dark matter (DM) particle with lepto...
In the classic type I seesaw mechanism with very heavy right-handed (RH) neutrinos, it is possible t...
The recently observed IceCube PeV events could be due to heavy dark matter (DM) decay. In this paper...
We investigate a minimal neutrino portal dark matter (DM) model where a right-handed neutrino both g...
In this paper, we propose the sterile neutrino portal dark matter in $$\nu $$THDM. This model can na...
We investigate a simplified freeze-in dark-matter model in which the dark matter only interacts with...
In the presence of interactions between neutrinos and dark matter (DM), DM can potentially be produc...
We analyze a simple extension of the standard model (SM) with a dark sector composed of a scalar and...
Dark matter (DM) particles are predicted to decay into Standard Model particles which would produce ...
We explore a Portalino-like model of dark matter and neutrino masses in which right-handed neutrino ...
We explore the possibility that dark matter interactions with Standard Model particles are dominated...
Abstract In this paper, we propose the sterile neutrino portal dark matter in $$\nu $$ ν THDM. This ...
We propose a minimal model to simultaneously account for a realistic neutrino spectrum through a typ...
Sterile neutrinos are one of the leading dark matter candidates. Their masses may originate from a v...
We propose a minimal model to simultaneously account for a realistic neutrino spectrum through a typ...
We investigate a beyond standard model (SM) portal scenario for dark matter (DM) particle with lepto...
In the classic type I seesaw mechanism with very heavy right-handed (RH) neutrinos, it is possible t...
The recently observed IceCube PeV events could be due to heavy dark matter (DM) decay. In this paper...
We investigate a minimal neutrino portal dark matter (DM) model where a right-handed neutrino both g...
In this paper, we propose the sterile neutrino portal dark matter in $$\nu $$THDM. This model can na...
We investigate a simplified freeze-in dark-matter model in which the dark matter only interacts with...
In the presence of interactions between neutrinos and dark matter (DM), DM can potentially be produc...
We analyze a simple extension of the standard model (SM) with a dark sector composed of a scalar and...
Dark matter (DM) particles are predicted to decay into Standard Model particles which would produce ...
We explore a Portalino-like model of dark matter and neutrino masses in which right-handed neutrino ...
We explore the possibility that dark matter interactions with Standard Model particles are dominated...
Abstract In this paper, we propose the sterile neutrino portal dark matter in $$\nu $$ ν THDM. This ...
We propose a minimal model to simultaneously account for a realistic neutrino spectrum through a typ...
Sterile neutrinos are one of the leading dark matter candidates. Their masses may originate from a v...
We propose a minimal model to simultaneously account for a realistic neutrino spectrum through a typ...
We investigate a beyond standard model (SM) portal scenario for dark matter (DM) particle with lepto...
In the classic type I seesaw mechanism with very heavy right-handed (RH) neutrinos, it is possible t...
The recently observed IceCube PeV events could be due to heavy dark matter (DM) decay. In this paper...