The detection of neutrinos from U, Th, and K decay in the Earth (geo-neutrinos) will help to fix the total amount of long-lived radioactive elements and thus the radiogenic contribution to the terrestrial heat. Moreover, it will provide a direct test of a fundamental paradigm about the origin, formation and structure of the Earth, i.e., the Bulk Silicate Earth model. Alternative or variant models of Earth (including the presence of potassium or the possibility of a giant reactor in the core) can also be checked. This short review presents the status and prospects in this exciting field of research
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...
Neutrino geophysics is an emerging interdisciplinary field with the potential to map the abundances ...
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...
Earth shines in antineutrinos produced from long-lived radioactive elements: detection of this signa...
We discuss the implications of KamLAND result on geo-neutrinos for the radiogenic contribution of Ur...
In preparation to the experimental results which will be available in the future, we consider geo-n...
AbstractGeoneutrinos are antineutrinos produced in radioactive decays within Earth's interior. Those...
Roughly 40% of the Earth's total heat flow is powered by radioactive decays in the crust and mantle....
In preparation to the experimental results which will be available in the future, we study geo-neutr...
A significant fraction of the 44TW of heat dissipation from the Earth's interior is believed to orig...
The Earth has cooled since its formation, yet the decay of radiogenic isotopes, and in particular ur...
We comment on the first indication of geo-neutrino events from KamLAND and on the prospects for unde...
The review is conceived to provide a useful toolbox to understand present geoneutrino results with a...
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...
Neutrino geophysics is an emerging interdisciplinary field with the potential to map the abundances ...
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...
Earth shines in antineutrinos produced from long-lived radioactive elements: detection of this signa...
We discuss the implications of KamLAND result on geo-neutrinos for the radiogenic contribution of Ur...
In preparation to the experimental results which will be available in the future, we consider geo-n...
AbstractGeoneutrinos are antineutrinos produced in radioactive decays within Earth's interior. Those...
Roughly 40% of the Earth's total heat flow is powered by radioactive decays in the crust and mantle....
In preparation to the experimental results which will be available in the future, we study geo-neutr...
A significant fraction of the 44TW of heat dissipation from the Earth's interior is believed to orig...
The Earth has cooled since its formation, yet the decay of radiogenic isotopes, and in particular ur...
We comment on the first indication of geo-neutrino events from KamLAND and on the prospects for unde...
The review is conceived to provide a useful toolbox to understand present geoneutrino results with a...
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...
Neutrino geophysics is an emerging interdisciplinary field with the potential to map the abundances ...