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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

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 paper focuses on a proposal for an underground antineutrino antenna to further develop the dectection of these particles as a tool to map the distribution of radiogenic heat sources, such as the natural radionuclides and a hypothetical…

Geophysics · Physics 2007-05-23 R. J. de Meijer , E. R. van der Graaf , K. P. Jungmann

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

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

The main goal of the Borexino detector, in its final phase of construction in the Gran Sasso underground laboratory, is the direct observation and measurement of the low energy component of neutrinos coming from the Sun. The unique low…

High Energy Physics - Experiment · Physics 2007-05-23 Lino Miramonti

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

We review a new interdisciplinary field between Geology and Physics: the study of the Earth's geo-neutrino flux. We describe competing models for the composition of the Earth, present geological insights into the make up of the continental…

Geophysics · Physics 2015-06-17 G. Bellini , A. Ianni , L. Ludhova , F. Mantovani , W. F. McDonough

Geoneutrinos can provide a unique insight into Earth's interior, its central engine and its formation history. We study the detection of geoneutrinos in large direct detection experiments, which has been considered non-feasible. We compute…

High Energy Physics - Phenomenology · Physics 2019-05-29 Graciela B. Gelmini , Volodymyr Takhistov , Samuel J. Witte

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

Geoneutrinos, which are antineutrinos emitted during the decay of long-lived radioactive elements inside Earth, serve as a unique tool for studying the composition and heat budget of our planet. The Jiangmen Underground Neutrino Observatory…

High Energy Physics - Experiment · Physics 2025-11-11 Thomas Adam , Shakeel Ahmad , Rizwan Ahmed , Fengpeng An , João Pedro Athayde Marcondes de André , Costas Andreopoulos , Giuseppe Andronico , Nikolay Anfimov , Vito Antonelli , Tatiana Antoshkina , Didier Auguste , Marcel Büchner , Weidong Bai , Nikita Balashov , Andrea Barresi , Davide Basilico , Eric Baussan , Marco Beretta , Antonio Bergnoli , Nikita Bessonov , Daniel Bick , Lukas Bieger , Svetlana Biktemerova , Thilo Birkenfeld , Simon Blyth , Manuel Boehles , Anastasia Bolshakova , Mathieu Bongrand , Matteo Borghesi , Dominique Breton , Augusto Brigatti , Riccardo Brugnera , Riccardo Bruno , Antonio Budano , Jose Busto , Anatael Cabrera , Barbara Caccianiga , Hao Cai , Xiao Cai , Stéphane Callier , Steven Calvez , Antonio Cammi , Guofu Cao , Jun Cao , Yaoqi Cao , Rossella Caruso , Cédric Cerna , Vanessa Cerrone , Jinfan Chang , Yun Chang , Tim Charisse , Auttakit Chatrabhuti , Chao Chen , Haotian Chen , Jiahui Chen , Jian Chen , Jing Chen , Junyou Chen , Pingping Chen , Shaomin Chen , Shiqiang Chen , Yixue Chen , Yu Chen , Ze Chen , Zhangming Chen , Zhiyuan Chen , Zhongchang Chen , Jie Cheng , Yaping Cheng , Yu Chin Cheng , Alexander Chepurnov , Alexey Chetverikov , Davide Chiesa , Pietro Chimenti , Po-Lin Chou , Ziliang Chu , Artem Chukanov , Gérard Claverie , Catia Clementi , Barbara Clerbaux , Claudio Coletta , Marta Colomer Molla , Chenyang Cui , Ziyan Deng , Xiaoyu Ding , Xuefeng Ding , Yayun Ding , Bayu Dirgantara , Sergey Dmitrievsky , Dmitry Dolzhikov , Chuanshi Dong , Haojie Dong , Jianmeng Dong , Evgeny Doroshkevich , Marcos Dracos , Frédéric Druillole , Ran Du , Shuxian Du , Katherine Dugas , Stefano Dusini , Hongyue Duyang , Jessica Eck , Andrea Fabbri , Ulrike Fahrendholz , Lei Fan , Liangqianjin Fan , Jian Fang , Wenxing Fang , Elia Stanescu Farilla , Dmitry Fedoseev , Li-Cheng Feng , Qichun Feng , Shaoting Feng , Daniela Fetzer , Marcellin Fotzé , Amélie Fournier , Aaron Freegard , Ying Fu , Haonan Gan , Feng Gao , Ruohan Gao , Alberto Garfagnini , Arsenii Gavrikov , Marco Giammarchi , Nunzio Giudice , Maxim Gonchar , Guanda Gong , Guanghua Gong , Yuri Gornushkin , Marco Grassi , Maxim Gromov , Vasily Gromov , Minhao Gu , Xiaofei Gu , Yu Gu , Mengyun Guan , Yuduo Guan , Nunzio Guardone , Rosa Maria Guizzetti , Cong Guo , Wanlei Guo , Caren Hagner , Hechong Han , Yang Han , Chuanhui Hao , Vidhya Thara Hariharan , Miao He , Wei He , Xinhai He , Ziou He , Tobias Heinz , Patrick Hellmuth , Yuekun Heng , YuenKeung Hor , Shaojing Hou , Fatima Houria , Yee Hsiung , Bei-Zhen Hu , Hang Hu , Jun Hu , Tao Hu , Yuxiang Hu , Guihong Huang , Jinhao Huang , Junlin Huang , Junting Huang , Kaixuan Huang , Shengheng Huang , Tao Huang , Xin Huang , Xingtao Huang , Yongbo Huang , Jiaqi Hui , Lei Huo , Cédric Huss , Safeer Hussain , Leonard Imbert , Ara Ioannisian , Adrienne Jacobi , Arshak Jafar , Beatrice Jelmini , Xiangpan Ji , Xiaolu Ji , Junji Jia , Cailian Jiang , Guangzheng Jiang , Junjie Jiang , Xiaoshan Jiang , Xiaozhao Jiang , Yijian Jiang , Yixuan Jiang , Xiaoping Jing , Cécile Jollet , Liam Jones , Li Kang , Narine Kazarian , Ali Khan , Amina Khatun , Khanchai Khosonthongkee , Denis Korablev , Konstantin Kouzakov , Alexey Krasnoperov , Sergey Kuleshov , Sindhujha Kumaran , Nikolay Kutovskiy , Loïc Labit , Tobias Lachenmaier , Haojing Lai , Cecilia Landini , Lorenzo Lastrucci , Sébastien Leblanc , Matthieu Lecocq , Frederic Lefevre , Ruiting Lei , Rupert Leitner , Petr Lenskii , Jason Leung , Demin Li , Fei Li , Gaosong Li , Jiajun Li , Meiou Li , Min Li , Nan Li , Ruhui Li , Rui Li , Shanfeng Li , Teng Li , Weidong Li , Xiaonan Li , Yi Li , Yichen Li , Yifan Li , Yingke Li , Yufeng Li , Zhaohan Li , Zhibing Li , Zhiwei Li , Zi-Ming Li , An-An Liang , Jiajun Liao , Minghua Liao , Yilin Liao , Ayut Limphirat , Bo-Chun Lin , Guey-Lin Lin , Shengxin Lin , Tao Lin , Xingyi Lin , Jiajie Ling , Xin Ling , Ivano Lippi , Caimei Liu , Fang Liu , Fengcheng Liu , Haidong Liu , Hongbang Liu , Hongjuan Liu , Jianglai Liu , Jiaxi Liu , Jinchang Liu , Kainan Liu , Min Liu , Qian Liu , Runxuan Liu , Shenghui Liu , Shulin Liu , Ximing Liu , Xiwen Liu , Xuewei Liu , Yankai Liu , Yiqi Liu , Zhipeng Liu , Zhuo Liu , Lorenzo Loi , Alexey Lokhov , Paolo Lombardi , Kai Loo , Selma Conforti Di Lorenzo , Chuan Lu , Haoqi Lu , Junguang Lu , Meishu Lu , Shuxiang Lu , Xianguo Lu , Bayarto Lubsandorzhiev , Sultim Lubsandorzhiev , Livia Ludhova , Arslan Lukanov , Fengjiao Luo , Guang Luo , Jianyi Luo , Shu Luo , Wuming Luo , Xiaojie Luo , Vladimir Lyashuk , Bangzheng Ma , Bing Ma , Qiumei Ma , Si Ma , Wing Yan Ma , Xiaoyan Ma , Xubo Ma , Jihane Maalmi , Jingyu Mai , Marco Malabarba , Yury Malyshkin , Roberto Carlos Mandujano , Fabio Mantovani , Xin Mao , Stefano M. 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The science potential of a 10 kiloton deep-ocean liquid scintillation detector for ~1 MeV energy scale electron anti-neutrinos has been studied. Such an instrument, designed to be portable and function in the deep ocean (3-5 km) can make…

High Energy Physics - Experiment · Physics 2008-10-31 John G. Learned , Stephen T. Dye , Sandip Pakvasa

Geo-reactor models suggest the existence of natural nuclear reactors at different deep-earth locations with loosely defined output power. Reactor fission products undergo beta decay with the emission of electron antineutrinos, which…

Nuclear Experiment · Physics 2010-02-09 S. T. Dye

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

The review is conceived to help the reader to interpret present geoneutrino results in the framework of Earth's energetics and composition. Starting from the comprehension of antineutrino production, propagation, and detection, the status…

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 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

Neutrinos produced by nuclear reactors have played a major role in advancing our knowledge of the properties of neutrinos. The first direct detection of the neutrino, confirming its existence, was performed using reactor neutrinos. More…

High Energy Physics - Experiment · Physics 2019-02-26 Xin Qian , Jen-Chieh Peng

A natural nuclear fission reactor with a power output of 3- 10 terawatt at the center of the earth has been proposed as the energy source of the earth's magnetic field. The proposal can be directly tested by a massive liquid scintillation…

High Energy Physics - Experiment · Physics 2007-05-23 R. S. Raghavan