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Related papers: Towards Earth AntineutRino TomograpHy (EARTH)

200 papers

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

J.M. Herndon in 90-s proposed a natural nuclear fission georeactor at the center of the Earth with a power output of 3-10 TW as an energy source to sustain the Earth magnetic field. R.S. Raghavan in 2002 y. pointed out that under certain…

High Energy Physics - Phenomenology · Physics 2008-11-26 G. Domogatski , V. Kopeikin , L. Mikaelyan , V. Sinev

The observation of high-energy extraterrestrial neutrinos is one of the most promising future options to increase our knowledge on non-thermal processes in the universe. Neutrinos are e.g. unavoidably produced in environments where…

Astrophysics · Physics 2009-11-11 Ulrich F. Katz

The detection of cosmic neutrinos with energies above 1017 eV got growing interest during recent years. Possible target materials for in-matter arrays of ~100 km3 size under discussion are water, ice and rock salt. Here we propose to…

Astrophysics · Physics 2009-06-23 R. Nahnhauer , A. A. Rostovtsev , D. Tosi

Radiogenic heating is a key component of the energy balance and thermal evolution of the Earth. It contributes to mantle convection, plate tectonics, volcanoes, and mountain building. Geo-neutrino observations estimate the present…

Geophysics · Physics 2014-12-12 Steve Dye

The Protvino accelerator facility located in the Moscow region, Russia, is in a good position to offer a rich experimental research program in the field of neutrino physics. Of particular interest is the possibility to direct a neutrino…

The Jiangmen Underground Neutrino Observatory (JUNO), a 20 kton multi-purpose underground liquid scintillator detector, was proposed with the determination of the neutrino mass hierarchy as a primary physics goal. It is also capable of…

Instrumentation and Detectors · Physics 2016-02-02 Fengpeng An , Guangpeng An , Qi An , Vito Antonelli , Eric Baussan , John Beacom , Leonid Bezrukov , Simon Blyth , Riccardo Brugnera , Margherita Buizza Avanzini , Jose Busto , Anatael Cabrera , Hao Cai , Xiao Cai , Antonio Cammi , Guofu Cao , Jun Cao , Yun Chang , Shaomin Chen , Shenjian Chen , Yixue Chen , Davide Chiesa , Massimiliano Clemenza , Barbara Clerbaux , Janet Conrad , Davide D'Angelo , Herve De Kerret , Zhi Deng , Ziyan Deng , Yayun Ding , Zelimir Djurcic , Damien Dornic , Marcos Dracos , Olivier Drapier , Stefano Dusini , Stephen Dye , Timo Enqvist , Donghua Fan , Jian Fang , Laurent Favart , Richard Ford , Marianne Goger-Neff , Haonan Gan , Alberto Garfagnini , Marco Giammarchi , Maxim Gonchar , Guanghua Gong , Hui Gong , Michel Gonin , Marco Grassi , Christian Grewing , Mengyun Guan , Vic Guarino , Gang Guo , Wanlei Guo , Xin-Heng Guo , Caren Hagner , Ran Han , Miao He , Yuekun Heng , Yee Hsiung , Jun Hu , Shouyang Hu , Tao Hu , Hanxiong Huang , Xingtao Huang , Lei Huo , Ara Ioannisian , Manfred Jeitler , Xiangdong Ji , Xiaoshan Jiang , Cecile Jollet , Li Kang , Michael Karagounis , Narine Kazarian , Zinovy Krumshteyn , Andre Kruth , Pasi Kuusiniemi , Tobias Lachenmaier , Rupert Leitner , Chao Li , Jiaxing Li , Weidong Li , Weiguo Li , Xiaomei Li , Xiaonan Li , Yi Li , Yufeng Li , Zhi-Bing Li , Hao Liang , Guey-Lin Lin , Tao Lin , Yen-Hsun Lin , Jiajie Ling , Ivano Lippi , Dawei Liu , Hongbang Liu , Hu Liu , Jianglai Liu , Jianli Liu , Jinchang Liu , Qian Liu , Shubin Liu , Shulin Liu , Paolo Lombardi , Yongbing Long , Haoqi Lu , Jiashu Lu , Jingbin Lu , Junguang Lu , Bayarto Lubsandorzhiev , Livia Ludhova , Shu Luo , Vladimir Lyashuk , Randolph Mollenberg , Xubo Ma , Fabio Mantovani , Yajun Mao , Stefano M. Mari , William F. McDonough , Guang Meng , Anselmo Meregaglia , Emanuela Meroni , Mauro Mezzetto , Lino Miramonti , Thomas Mueller , Dmitry Naumov , Lothar Oberauer , Juan Pedro Ochoa-Ricoux , Alexander Olshevskiy , Fausto Ortica , Alessandro Paoloni , Haiping Peng , Jen-Chieh Peng , Ezio Previtali , Ming Qi , Sen Qian , Xin Qian , Yongzhong Qian , Zhonghua Qin , Georg Raffelt , Gioacchino Ranucci , Barbara Ricci , Markus Robens , Aldo Romani , Xiangdong Ruan , Xichao Ruan , Giuseppe Salamanna , Mike Shaevitz , Valery Sinev , Chiara Sirignano , Monica Sisti , Oleg Smirnov , Michael Soiron , Achim Stahl , Luca Stanco , Jochen Steinmann , Xilei Sun , Yongjie Sun , Dmitriy Taichenachev , Jian Tang , Igor Tkachev , Wladyslaw Trzaska , Stefan van Waasen , Cristina Volpe , Vit Vorobel , Lucia Votano , Chung-Hsiang Wang , Guoli Wang , Hao Wang , Meng Wang , Ruiguang Wang , Siguang Wang , Wei Wang , Yi Wang , Yi Wang , Yifang Wang , Zhe Wang , Zheng Wang , Zhigang Wang , Zhimin Wang , Wei Wei , Liangjian Wen , Christopher Wiebusch , Bjorn Wonsak , Qun Wu , Claudia-Elisabeth Wulz , Michael Wurm , Yufei Xi , Dongmei Xia , Yuguang Xie , Zhi-zhong Xing , Jilei Xu , Baojun Yan , Changgen Yang , Chaowen Yang , Guang Yang , Lei Yang , Yifan Yang , Yu Yao , Ugur Yegin , Frederic Yermia , Zhengyun You , Boxiang Yu , Chunxu Yu , Zeyuan Yu , Sandra Zavatarelli , Liang Zhan , Chao Zhang , Hong-Hao Zhang , Jiawen Zhang , Jingbo Zhang , Qingmin Zhang , Yu-Mei Zhang , Zhenyu Zhang , Zhenghua Zhao , Yangheng Zheng , Weili Zhong , Guorong Zhou , Jing Zhou , Li Zhou , Rong Zhou , Shun Zhou , Wenxiong Zhou , Xiang Zhou , Yeling Zhou , Yufeng Zhou , Jiaheng Zou

Constraints on the Earth's composition and on its radiogenic energy budget come from the detection of geoneutrinos. The KamLAND and Borexino experiments recently reported the geoneutrino flux, which reflects the amount and distribution of U…

ANTARES is the first undersea neutrino detector ever built and presently the neutrino telescope with the largest effective area operating in the Northern Hemisphere. A three- dimensional array of photomultiplier tubes detects the Cherenkov…

High Energy Astrophysical Phenomena · Physics 2015-06-04 Ciro Bigongiari

Atmospheric neutrinos, through their weak interactions, can serve as an independent tool for exploring the internal structure of Earth. The information obtained would be complementary to that provided by seismic and gravitational…

High Energy Physics - Phenomenology · Physics 2025-01-15 Anuj Kumar Upadhyay , Anil Kumar , Sanjib Kumar Agarwalla , Amol Dighe

Soil assessment is important for mobile robot planning and navigation on natural and planetary environments. Terramechanic characteristics can be inferred from the thermal behaviour of soils under the influence of sunlight using remote…

A next-generation neutrino telescope infrastructure, the Kilometer Cube Neutrino Telescope KM3NeT, is currently under construction in the Mediterranean Sea. Its low energy configuration ORCA is optimised for the detection of atmospheric…

High Energy Physics - Experiment · Physics 2022-09-21 Piotr Kalaczyński

The ANTARES detector, completed in 2008, is the largest neutrino telescope in the Northern hemisphere. Located at a depth of 2.5 km in the Mediterranean Sea, 40 km off the Toulon shore, its main goal is the search for astrophysical high…

High Energy Astrophysical Phenomena · Physics 2013-12-17 The ANTARES Collaboration

Neutrino telescopes will open, in the next years, new opportunities in observational high energy astrophysics. For these experiments, atmospheric muons from primary cosmic ray interactions in the atmosphere play an important role, because…

Instrumentation and Detectors · Physics 2009-01-01 G. Carminati , A. Margiotta , M. Spurio

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

The ANTARES detector, completed in 2008, is the largest neutrino telescope in the Northern hemisphere. It is located at a depth of 2.5 km in the Mediterranean Sea, 40 km off the Toulon shore. The scientific scope of the experiment is very…

High Energy Astrophysical Phenomena · Physics 2015-06-30 S. Adrián-Martínez , J. A. Aguilar , I. Al Samarai , A. Albert , M. André , M. Anghinolfi , G. Anton , S. Anvar , M. Ardid , A. C. Assis Jesus , T. Astraatmadja , J-J. Aubert , B. Baret , S. Basa , V. Bertin , S. Biagi , A. Bigi , C. Bigongiari , C. Bogazzi , M. Bou-Cabo , B. Bouhou , M. C. Bouwhuis , J. Brunner , J. Busto , F. Camarena , A. Capone , C. Carloganu , G. Carminati , J. Carr , S. Cecchini , Z. Charif , Ph. Charvis , T. Chiarusi , M. Circella , H. Costantini , P. Coyle , A. Creusto , C. Curtil , G. De Bonis , M. P. Decowski , I. Dekeyser , A. Deschamps , C. Distefano , C. Donzaud , D. Dornic , Q. Dorosti , D. Drouhin , T. Eberl , U. Emanuele , A. Enzenhöfer , J-P. Ernenwein , S. Escoffier , P. Fermani , M. Ferri , V. Flaminio , F. Folger , U. Fritsch , J-L. Fuda , S. Galatà , P. Gay , G. Giacomelli , V. Giordano , J. P. Gómez-González , K. Graf , G. Guillard , G. Halladjian , G. Hallewell , H. van Haren , J. Hartman , A. J. Heijboer , Y. Hello , J. J. Hernández-Rey , B. Herold , J. Hößl , C. C. Hsu , M. de Jong , M. Kadler , O. Kalekin , A. Kappes , U. Katz , O. Kavatsyuk , P. Kooijman , C. Kopper , A. Kouchner , I. Kreykenbohm , V. Kulikovskiy , R. Lahmann , P. Lamare , G. Larosa , D. Lattuada , D. Lefèvre , G. Lim , D. Lo Presti , H. Loehner , S. Loucatos , S. Mangano , M. Marcelin , A. Margiotta , J. A. Martínez-Mora , A. Meli , T. Montaruli , M. Morganti , L. Moscoso , H. Motz , M. Neff , E. Nezri , D. Palioselitis , G. E. Pavalas , K. Payet , P. Payre , J. Petrovic , P. Piattelli , N. Picot-Clemente , V. Popa , T. Pradier , E. Presani , C. Racca , C. Reed , G. Riccobene , C. Richardt , R. Richter , C. Rivière , A. Robert , K. Roensch , A. Rostovtsev , J. Ruiz-Rivas , M. Rujoiu , G. V. Russo , F. Salesa , P. Sapienza , F. Schöck , J-P. Schuller , F. Schüssler , T. Seitz , R. Shanidze , F. Simeone , A. Spies , M. Spurio , J. J. M. Steijger , Th. Stolarczyk , A. Sánchez-Losa , M. Taiuti , C. Tamburini , S. Toscano , B. Vallage , C. Vallée , V. Van Elewyck , G. Vannoni , M. Vecchi , P. Vernin , S. Wagner , G. Wijnker , J. Wilms , E. de Wolf , H. Yepes , D. Zaborov , J. D. Zornoza , J. Zúñiga

A high-energy neutrino telescope, such as the operating AMANDA detector, may detect neutrinos produced in sources, possibly active galactic nuclei or gamma-ray bursts, distant by a thousand megaparsecs. These sources produce mostly nu_e or…

High Energy Physics - Phenomenology · Physics 2009-10-31 Francis Halzen , David Saltzberg

We consider tomography of the Earth's interior using the neutrino pair beam which has recently been proposed. The beam produces a large amount of neutrino and antineutrino pairs from the circulating partially stripped ions and provides the…

High Energy Physics - Phenomenology · Physics 2018-09-12 Takehiko Asaka , Hisashi Okui , Minoru Tanaka , Motohiko Yoshimura

The ANTARES underwater neutrino telescope is located in the Mediterranean Sea about 40 km from Toulon at a depth of 2475 m. In its 12 line configuration it has almost 900 photomultipliers in 275 "floors". The performance of the detector is…

Instrumentation and Methods for Astrophysics · Physics 2011-05-09 Giorgio Giacomelli
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