The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, which fulfills all the requirements of a dark matter annual modulation signature, and the new result by the CoGeNT experiment that shows a similar behavior are comparatively examined under the hypothesis of a dark matter candidate particle interacting with the detectors' nuclei by a coherent elastic process. The ensuing physical regions in the plane of the dark matter-particle mass versus the dark matter-particle nucleon cross-section are derived for various galactic halo models and by taking into account the impact of various experimental uncertainties. It is shown that the DAMA and the CoGeNT regions agree well between each other and are well ...
Experimental efforts and theoretical developmens support that most of the Universe is Dark and a lar...
In previous papers we showed that the data of the DAMA/NaI experiment for WIMP direct detection, whi...
In this paper, we study the recent excess of low energy events observed by the CoGeNT Collaboration,...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
In this note we present an extension of our previous analysis of some preliminary experimental resul...
We analyze the annual-modulation effect, measured by the DAMA Collaboration with the new implementat...
Direct detection experiments, which are designed to detect the scattering of dark matter off nuclei ...
The long-standing model-independent annual modulation effect measured by DAMA Collaboration is exami...
Experimental efforts and theoretical developmens support that most of the Universe is Dark and a lar...
The highly radiopure $\simeq$ 250 kg NaI(Tl) DAMA/LIBRA set-up is running at the Gran Sasso National...
The DAMA/LIBRA experiment at the Gran Sasso National Laboratory of the INFN has confirmed the model-...
Experimental efforts and theoretical developmens support that most of the Universe is Dark and a lar...
In previous papers we showed that the data of the DAMA/NaI experiment for WIMP direct detection, whi...
In this paper, we study the recent excess of low energy events observed by the CoGeNT Collaboration,...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
The long-standing model-independent annual modulation effect measured by the DAMA Collaboration, whi...
In this note we present an extension of our previous analysis of some preliminary experimental resul...
We analyze the annual-modulation effect, measured by the DAMA Collaboration with the new implementat...
Direct detection experiments, which are designed to detect the scattering of dark matter off nuclei ...
The long-standing model-independent annual modulation effect measured by DAMA Collaboration is exami...
Experimental efforts and theoretical developmens support that most of the Universe is Dark and a lar...
The highly radiopure $\simeq$ 250 kg NaI(Tl) DAMA/LIBRA set-up is running at the Gran Sasso National...
The DAMA/LIBRA experiment at the Gran Sasso National Laboratory of the INFN has confirmed the model-...
Experimental efforts and theoretical developmens support that most of the Universe is Dark and a lar...
In previous papers we showed that the data of the DAMA/NaI experiment for WIMP direct detection, whi...
In this paper, we study the recent excess of low energy events observed by the CoGeNT Collaboration,...