International audienceAfter being gravitationally captured, low-mass cold dark-matter particles (mass range from 5 to ~50 × 109 electron volts) are thought to drift to the center of the Sun and affect its internal structure. Solar neutrinos provide a way to probe the physical processes occurring in the Sun’s core. Solar neutrino spectroscopy, in particular, is expected to measure the neutrino fluxes produced in nuclear reactions in the Sun. Here, we show how the presence of dark-matter particles inside the Sun will produce unique neutrino flux distributions in 7Be-ν and 8B-ν, as well as 13N-ν, 15O-ν, and 17F-ν
The neutrino flux at Earth is dominated in the keV energy range by the neutrinos produced in the Sun...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...
International audienceAfter being gravitationally captured, low-mass cold dark-matter particles (mas...
After being gravitationally captured, low-mass cold dark-matter particles (mass range from 5 to ~50 ...
Neutrinos are produced in several neutrino nuclear reactions of the proton-proton chain and carbon-n...
International audienceNeutrinos are produced in several neutrino nuclear reactions of the proton-pro...
International audienceThe next generation of solar neutrino detectors will provide a precision measu...
In the paper attached to this thesis, Paper I, we have calculated the flux of neutrinos that emanate...
In the paper attached to this thesis, Paper I, we have calculated the flux of neutrinos that emanate...
In the paper attached to this thesis, Paper I, we have calculated the flux of neutrinos that emanate...
International audienceNext-generation experiments allow for the possibility of testing the neutrino ...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...
The neutrino flux at Earth is dominated in the keV energy range by the neutrinos produced in the Sun...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...
International audienceAfter being gravitationally captured, low-mass cold dark-matter particles (mas...
After being gravitationally captured, low-mass cold dark-matter particles (mass range from 5 to ~50 ...
Neutrinos are produced in several neutrino nuclear reactions of the proton-proton chain and carbon-n...
International audienceNeutrinos are produced in several neutrino nuclear reactions of the proton-pro...
International audienceThe next generation of solar neutrino detectors will provide a precision measu...
In the paper attached to this thesis, Paper I, we have calculated the flux of neutrinos that emanate...
In the paper attached to this thesis, Paper I, we have calculated the flux of neutrinos that emanate...
In the paper attached to this thesis, Paper I, we have calculated the flux of neutrinos that emanate...
International audienceNext-generation experiments allow for the possibility of testing the neutrino ...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
International audienceWe study the effect of dark matter (DM) particles in the Sun, focusing, in par...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...
The neutrino flux at Earth is dominated in the keV energy range by the neutrinos produced in the Sun...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...
The prospects to detect neutrinos from the Sun arising from dark matter annihilations in the core of...