In preparation to the experimental results which will be available in the future, we study geo-neutrino production for different models of mantle convection and composition. By using global mass balance for the Bulk Silicate Earth, the predicted flux contribution from distant sources in the crust and in the mantle is fixed within a total uncertainty of ±15%. We also discuss regional effects, provided by subducting slabs or plumes near the detector. In 4 years a 5-kton detector operating at a site relatively far from nuclear power plants can achieve measurements of the geo-neutrino signal accurate to within ±5%. It will provide a crucial test of the Bulk Silicate Earth and a direct estimate of the radiogenic contribution to terrestrial h...
Geoneutrinos: a new tool to study the Earth Livia LudhovaOur planet continues to keep many secrets, ...
The study of the antineutrinos emitted by the radioactive decays in the Earth interior is the only w...
Geo-neutrino detection can determine the amount of long-lived radioactive elements within our planet...
In preparation to the experimental results which will be available in the future, we consider geo-n...
Geo-neutrino detection will determine the amount of long lived radioactive elements within our plane...
Geo-neutrino detection will determine the amount of long lived radioactive elements within our plane...
Neutrino geophysics is an emerging interdisciplinary field with the potential to map the abundances ...
Abstract. Recently the Borexino [1] and KamLAND [2] collaborations reported evidence of the geo-neut...
• Knowledge of the amount and spatial distribution of heat producing elements (HPEs) in the Earth’s ...
AbstractWe present the current status of geo-neutrino measurements and their implications for radiog...
We present the current status of geo-neutrino measurements and their implications for radiogenic hea...
Recently the Borexino [1] and KamLAND [2] collaborations reported evidence of the geo-neutrino signa...
Geo-neutrinos, electron antineutrinos from natu-ral radioactive decays inside the Earth, bring to th...
There are several unanswered fundamental questions about our planet and in particular, about the dee...
New measurements of the geo-neutrino flux are available from two independent and complementary exper...
Geoneutrinos: a new tool to study the Earth Livia LudhovaOur planet continues to keep many secrets, ...
The study of the antineutrinos emitted by the radioactive decays in the Earth interior is the only w...
Geo-neutrino detection can determine the amount of long-lived radioactive elements within our planet...
In preparation to the experimental results which will be available in the future, we consider geo-n...
Geo-neutrino detection will determine the amount of long lived radioactive elements within our plane...
Geo-neutrino detection will determine the amount of long lived radioactive elements within our plane...
Neutrino geophysics is an emerging interdisciplinary field with the potential to map the abundances ...
Abstract. Recently the Borexino [1] and KamLAND [2] collaborations reported evidence of the geo-neut...
• Knowledge of the amount and spatial distribution of heat producing elements (HPEs) in the Earth’s ...
AbstractWe present the current status of geo-neutrino measurements and their implications for radiog...
We present the current status of geo-neutrino measurements and their implications for radiogenic hea...
Recently the Borexino [1] and KamLAND [2] collaborations reported evidence of the geo-neutrino signa...
Geo-neutrinos, electron antineutrinos from natu-ral radioactive decays inside the Earth, bring to th...
There are several unanswered fundamental questions about our planet and in particular, about the dee...
New measurements of the geo-neutrino flux are available from two independent and complementary exper...
Geoneutrinos: a new tool to study the Earth Livia LudhovaOur planet continues to keep many secrets, ...
The study of the antineutrinos emitted by the radioactive decays in the Earth interior is the only w...
Geo-neutrino detection can determine the amount of long-lived radioactive elements within our planet...