We discuss the positive indications of a possible dark matter signal in direct detection experiments in terms of a mechanism of interaction between the dark matter particle and the nuclei occurring via the exchange of a light mediator, resulting in a long-range interaction. We analyze the annual modulation results observed by the DAMA and CoGeNT experiments and the observed excess of events of CRESST. In our analysis, we discuss the relevance of uncertainties related to the velocity distribution of galactic dark matter and to the channeling effect in NaI. We find that a long-range force is a viable mechanism, which can provide full agreement between the reconstructed dark matter properties from the various experimental data sets, especially...
Traditional direct searches for dark matter, looking for nuclear recoils in deep underground detecto...
We study the impact of the assumed velocity distribution of galactic dark matter particles on the in...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
We discuss the positive indications of a possible dark matter signal in direct detection experiments...
We study the effect of a long-range DM-nuclei interaction occurring via the exchange of a light med...
International audienceI present the status of direct dark matter detection with specific attention t...
Abstract. A long range Weak Equivalence Principle (WEP) violating force between Dark Matter (DM) par...
I present the status of direct dark matter detection with specific attention to the experimental res...
We study the effect of a long–range DM-nuclei interaction occurring via the exchange of a light medi...
We study a fermionic Dark Matter particle carrying magnetic dipole moment and analyze its impact on ...
We explore the potential of future cryogenic direct detection experiments to determine the propertie...
A long-range intergalactic force between dark matter (DM) particles, mediated by an ultralight scala...
Experimental efforts and theoretical developments support that most of the Universe is dark and a la...
Identifying the relic particles that constitute the cold dark matter in our Universe is an outstandi...
Traditional direct searches for dark matter, looking for nuclear recoils in deep underground detecto...
We study the impact of the assumed velocity distribution of galactic dark matter particles on the in...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
We discuss the positive indications of a possible dark matter signal in direct detection experiments...
We study the effect of a long-range DM-nuclei interaction occurring via the exchange of a light med...
International audienceI present the status of direct dark matter detection with specific attention t...
Abstract. A long range Weak Equivalence Principle (WEP) violating force between Dark Matter (DM) par...
I present the status of direct dark matter detection with specific attention to the experimental res...
We study the effect of a long–range DM-nuclei interaction occurring via the exchange of a light medi...
We study a fermionic Dark Matter particle carrying magnetic dipole moment and analyze its impact on ...
We explore the potential of future cryogenic direct detection experiments to determine the propertie...
A long-range intergalactic force between dark matter (DM) particles, mediated by an ultralight scala...
Experimental efforts and theoretical developments support that most of the Universe is dark and a la...
Identifying the relic particles that constitute the cold dark matter in our Universe is an outstandi...
Traditional direct searches for dark matter, looking for nuclear recoils in deep underground detecto...
We study the impact of the assumed velocity distribution of galactic dark matter particles on the in...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...