In this paper we propose a dark matter model and study aspects of its phenomenology. Our model is based on a new dark matter sector with a U(1)′ gauge symmetry plus a discrete symmetry added to the standard model of particle physics. The new fields of the dark matter sector have no hadronic charges and couple only to leptons. Our model cannot only give rise to the observed neutrino mass hierarchy, but can also generate the baryon number asymmetry via nonthermal leptogenesis. The breaking of the new U(1)′ symmetry produces cosmic strings. The dark matter particles are produced nonthermally from cosmic string loop decay which allows one to obtain sufficiently large annihilation cross sections to explain the observed cosmic ray positron and el...
Determining the nature of dark matter (DM) remains one of the key challenges in both particle physic...
We first study dark matter within a hidden, or secluded, sector. A hidden sector that kinetically mi...
We propose a scenario where dark matter (DM) and dark radiation ($\Delta {\rm N}_{\rm eff}$) can be ...
In this paper we propose a dark matter model and study aspects of its phenomenology. Our model is ba...
We discuss new models of dark matter (DM) developed recently in light of the anomalous signals from ...
There is increasing evidence that conventional cold dark matter (CDM) models lead to conflicts betwe...
Dark Matter constitutes more than 80% of the total amount of matter in the Universe, yet almost not...
We present a model of weak scale dark matter (DM) where the thermal DM density is set by the lepton ...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
We explore the feasibility and astrophysical consequences of a new long-range U(1) gauge field (“dar...
We propose an extension of the standard model (SM) by including a dark sector comprised of three gen...
We initiate the study of novel thermal dark matter (DM) scenarios where present-day annihilation of ...
Thermal freeze-out of a weakly interacting massive particle is the dominant paradigm for dark matter...
Observations with the Fermi Large Area Telescope (LAT) indicate an excess in gamma rays originating ...
In this dissertation, we investigate various aspects of dark matter detection and model building. Mo...
Determining the nature of dark matter (DM) remains one of the key challenges in both particle physic...
We first study dark matter within a hidden, or secluded, sector. A hidden sector that kinetically mi...
We propose a scenario where dark matter (DM) and dark radiation ($\Delta {\rm N}_{\rm eff}$) can be ...
In this paper we propose a dark matter model and study aspects of its phenomenology. Our model is ba...
We discuss new models of dark matter (DM) developed recently in light of the anomalous signals from ...
There is increasing evidence that conventional cold dark matter (CDM) models lead to conflicts betwe...
Dark Matter constitutes more than 80% of the total amount of matter in the Universe, yet almost not...
We present a model of weak scale dark matter (DM) where the thermal DM density is set by the lepton ...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
We explore the feasibility and astrophysical consequences of a new long-range U(1) gauge field (“dar...
We propose an extension of the standard model (SM) by including a dark sector comprised of three gen...
We initiate the study of novel thermal dark matter (DM) scenarios where present-day annihilation of ...
Thermal freeze-out of a weakly interacting massive particle is the dominant paradigm for dark matter...
Observations with the Fermi Large Area Telescope (LAT) indicate an excess in gamma rays originating ...
In this dissertation, we investigate various aspects of dark matter detection and model building. Mo...
Determining the nature of dark matter (DM) remains one of the key challenges in both particle physic...
We first study dark matter within a hidden, or secluded, sector. A hidden sector that kinetically mi...
We propose a scenario where dark matter (DM) and dark radiation ($\Delta {\rm N}_{\rm eff}$) can be ...