English
Related papers

Related papers: Geoneutrino and Hydridic Earth model. Version 2

200 papers

We propose to include in the analysis of Borexino single event energy spectrum the scattering of $^{40}$K geo-antineutrinos by scintillator electrons. The Hydridic Earth model predicts the concentration of potassium in modern Earth from 1\%…

High Energy Physics - Experiment · Physics 2020-07-07 L. B. Bezrukov , I. S. Karpikov , A. S. Kurlovich , A. K. Mezhokh , S. V. Silaeva , V. V. Sinev , V. P. Zavarzina

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

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

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

Borexino collaboration reported about first measurement of solar CNO-$\nu$ interaction rate in Borexino detector. This result is consistent with Hydridic Earth model prediction about the contribution of $^{40}$K geo-antineutrino…

High Energy Physics - Experiment · Physics 2021-06-09 L. B. Bezrukov , I. S. Karpikov , A. S. Kurlovich , A. K. Mezhokh , S. V. Silaeva , V. V. Sinev , V. P. Zavarzina

The terrestrial distribution of U, Th, and K abundances governs the thermal evolution, traces the differentiation, and reflects the bulk composition of the earth. Comparing the bulk earth composition to chondritic meteorites estimates the…

Geophysics · Physics 2015-05-19 Steve Dye

It has been estimated that the entire Earth generates heat corresponding to about 40 TW (equivalent to 10,000 nuclear power plants) which is considered to originate mainly from the radioactive decay of elements like U, Th and K, deposited…

High Energy Physics - Phenomenology · Physics 2009-11-10 H. Nunokawa , W. J. C. Teves , R. Zukanovich Funchal

Debate continues on the amount and distribution of radioactive heat producing elements (i.e., U, Th, and K) in the Earth, with estimates for mantle heat production varying by an order of magnitude. Constraints on the bulk-silicate Earth's…

Geophysics · Physics 2020-04-22 Scott A. Wipperfurth , Ondřej Šrámek , William F. McDonough

We predict geoneutrino fluxes in a reference model based on a detailed description of Earth's crust and mantle and using the best available information on the abundances of uranium, thorium, and potassium inside Earth's layers. We estimate…

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

The recent geoneutrino experimental results from KamLAND and Borexino detectors reveal the usefulness of analyzing the Earth geoneutrino flux, as it provides a constraint on the strength of the radiogenic heat power and this, in turn,…

Geo-neutrino observations probe the quantities and distributions of terrestrial heat-producing elements uranium and thorium. The quantities of these elements gauge global radiogenic power, offering insights into the origin and thermal…

Geophysics · Physics 2016-11-14 Steve Dye

A future large-volume liquid scintillator detector would provide a high-statistics measurement of terrestrial antineutrinos originating from $\beta$-decays of the uranium and thorium chains. In addition, the forward displacement of the…

Geoneutrinos, the electron (anti)neutrinos generated in decays or decay chains of the radioactive elements within the Earth, primarily K-40, U-238, and Th-232, serve as a unique probe for the inner chemical composition of the Earth. A…

High Energy Physics - Experiment · Physics 2026-04-02 Haozhe Sun , Zhe Wang , Shaomin Chen

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

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 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

Detecting the antineutrinos emitted by the decay of radioactive elements in the mantle and crust could provide a direct measurement of the total abundance of uranium and thorium in the Earth. In calculating the antineutrino flux at specific…

Nuclear Experiment · Physics 2015-06-26 Casey G. Rothschild , Mark C. Chen , Frank P. Calaprice

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…

Geophysics · Physics 2011-01-04 Gianni Fiorentini , Marcello Lissia , Fabio Mantovani , Riccardo Vannucci

A future large-volume liquid scintillator detector such as the proposed 50 kton LENA (Low Energy Neutrino Astronomy) detector would provide a high-statistics measurement of terrestrial antineutrinos originating from $\beta$-decays of the…

‹ Prev 1 2 3 10 Next ›