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Uranium and thorium are the main heat producing elements in the earth. Their quantities and distributions, which specify the flux of detectable antineutrinos generated by the beta decay of their daughter isotopes, remain unmeasured.…

Geophysics · Physics 2009-12-16 Steve Dye

The flux of geoneutrinos at any point on the Earth is a function of the abundance and distribution of radioactive elements within our planet. This flux has been successfully detected by the 1-kt KamLAND and 0.3-kt Borexino detectors with…

Instrumentation and Detectors · Physics 2016-02-19 Ran Han , Yu-Feng Li , Liang Zhan , William F. McDonough , Jun Cao , Livia Ludhova

Neutrino geophysics, the study of the Earth's interior by measuring the fluxes of geologically produced neutrino at its surface, is a new interdisciplinary field of science, rapidly developing as a synergy between geology, geophysics and…

Geophysics · Physics 2019-10-22 Oleg Smirnov

Roughly 40% of the Earth's total heat flow is powered by radioactive decays in the crust and mantle. Geo-neutrinos produced by these decays provide important clues about the origin, formation and thermal evolution of our planet, as well as…

Geophysics · Physics 2017-10-20 Michael Leyton , Stephen Dye , Jocelyn Monroe

We present the current status of geo-neutrino measurements and their implications for radiogenic heating in the mantle. Earth models predict different levels of radiogenic heating and, therefore, different geo-neutrino fluxes from the…

Geophysics · Physics 2014-05-02 S. T. Dye , Y. Huang , V. Lekic , W. F. McDonough , O. Sramek

There are still several unanswered fundamental questions concerning our planet and in particular, about the deep Earth, from where we lack direct samples. Today, due to the progress in neutrino-detection techniques, a new and unique tool to…

High Energy Physics - Experiment · Physics 2021-02-12 S. Kumaran , L. Ludhova

The estimations of integral intensity and energy spectrum of geoantineutrino on the Earth's surface (in the absence of oscillations) from different radioactive sources (U, Th and K) are obtained on the basis of temporal evolution analysis…

High Energy Physics - Phenomenology · Physics 2007-05-23 V. D. Rusov , V. N. Pavlovich , V. N. Vaschenko , V. A. Tarasov , D. A. Litvinov , V. N. Bolshakov , E. N. Khotyaintseva

We estimate terrestrial antineutrino and neutrino fluxes according to different models of Earth composition. We find large variations, corresponding to uncertainties on the estimated $U$, $Th$ and $K$ abundances in the mantle. Information…

Nuclear Experiment · Physics 2009-11-07 G. Fiorentini , F. Mantovani , B. Ricci

Uranium, Thorium and Potassium-40 abundances in the Earth were calculated in the frame of Hydridic Earth model. Terrestrial heat producton from U, Th and K40 decays was calculated also. We must admit the existance of Earth expansion process…

Earth and Planetary Astrophysics · Physics 2014-02-13 Leonid Bezrukov

A combination of several sources including: radiogenic heating, processes of mantle and core formation and differentiation, delayed radiogenic heating, earthquakes, and tidal friction account for the surface heat flux in the Earth.…

Instrumentation and Detectors · Physics 2009-02-23 P. Ila , W. Gosnold , P. Jagam , G. I. Lykken

Decays of radionuclides throughout the Earth's interior produce geothermal heat, but also are a source of antineutrinos. The (angle-integrated) geoneutrino flux places an integral constraint on the terrestrial radionuclide distribution. In…

High Energy Physics - Phenomenology · Physics 2011-04-11 Brian D. Fields , Kathrin A. Hochmuth

The regional contribution to the geo-neutrino signal at Gran Sasso National Laboratory (LNGS) was determined based on a detailed geological, geochemical and geophysical study of the region. U and Th abundances of more than 50 samples…

Earth and Planetary Astrophysics · Physics 2015-05-27 M. Coltorti , R. Boraso , F. Mantovani , M. Morsilli , G. Fiorentini , A. Riva , G. Rusciadelli , R. Tassinari , C. Tomei , G. Di Carlo , V. Chubakov

An accurate prediction of the geo-neutrino signal from the crust serves as a necessary prerequisite in the determination of the geo-neutrino flux from the mantle. In this work we report the non-negligible effect associated to the exact…

Geophysics · Physics 2020-01-01 Ran Han , Yu-Feng Li , Xin Mao

Geo-neutrino detection will determine the amount of long lived radioactive elements within our planet and fix the debated radiogenic contribution to the terrestrial heat. In addition, it will provide a direct test of the Bulk Silicate Earth…

High Energy Physics - Phenomenology · Physics 2011-01-04 Gianni Fiorentini , Marcello Lissia , Fabio Mantovani , Riccardo Vannucci

Geoneutrino is a new channel of information about geochemical composition of the Earth. We alnalysed here the following problem. What statistics do we need to distinguish between predictions of Bulk Silicate Earth model and Hydridic Earth…

Earth and Planetary Astrophysics · Physics 2015-06-19 L. Bezrukov , V. Sinev

A significant fraction of the 44TW of heat dissipation from the Earth's interior is believed to originate from the decays of terrestrial uranium and thorium. The only estimates of this radiogenic heat, which is the driving force for mantle…

Geo-neutrino detection can determine the amount of long-lived radioactive elements within our planet, thus providing a direct test of the Bulk Silicate Earth (BSE) model and fixing the radiogenic contribution to the terrestrial heat. We…

High Energy Physics - Phenomenology · Physics 2011-01-04 Gianni Fiorentini , Marcello Lissia , Fabio Mantovani , Riccardo Vannucci

The SNO+ detector, a new kiloton scale liquid scintillator detector capable of recording geoneutrino events, will define the strength of the Earth radiogenic heat. A detailed 3-D model of the regional crust, centered at SNO+ and based on…

Uranium and thorium within the Earth produce a major portion of terrestrial heat along with a measurable flux of electron antineutrinos. These elements are key components in geophysical and geochemical models. Their quantity and…

Geophysics · Physics 2009-11-13 Stephen T. Dye , Eugene H. Guillian