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The Borexino experiment, located in the Gran Sasso National Laboratory, is an organic liquid scintillator detector conceived for the real time spectroscopy of low energy solar neutrinos. The data taking campaign phase I (2007 - 2010) has…

Possibility to use ultra pure liquid Xenon as a low energy solar neutrino detector by means of $\nu$+e scatterings is evaluated. A possible detector with 10 tons of fiducial volume will give $\sim$14 events for pp-neutrinos and $\sim$6…

High Energy Physics - Phenomenology · Physics 2017-08-23 Y. Suzuki

More than forty years after the first detection of neutrinos from the Sun, the spectroscopy of solar neutrinos has proven to be an on-going success story. The long-standing puzzle about the observed solar neutrino deficit has been resolved…

High Energy Physics - Experiment · Physics 2017-06-28 Michael Wurm

Solar, terrestrial, and supernova neutrino experiments are subject to muon-induced radioactive backgrounds. The China Jinping Underground Laboratory (CJPL), with its unique advantage of a 2400 m rock coverage and long distance from nuclear…

The Jiangmen Underground Neutrino Observatory (JUNO) is a large liquid scintillator (LS) detector for neutrino mass ordering and other neutrino physics research. The detector uses large-size $20$ inches photomultiplier tubes to detect…

To maximize the light yield of the liquid scintillator (LS) for the Jiangmen Underground Neutrino Observatory (JUNO), a 20 t LS sample was produced in a pilot plant at Daya Bay. The optical properties of the new LS in various compositions…

Instrumentation and Detectors · Physics 2020-07-02 Daya Bay , JUNO collaborations , : , A. Abusleme , T. Adam , S. Ahmad , S. Aiello , M. Akram , N. Ali , F. P. An , G. P. An , Q. An , G. Andronico , N. Anfimov , V. Antonelli , T. Antoshkina , B. Asavapibhop , J. P. A. M. de André , A. Babic , A. B. Balantekin , W. Baldini , M. Baldoncini , H. R. Band , A. Barresi , E. Baussan , M. Bellato , E. Bernieri , D. Biare , T. Birkenfeld , M. Bishai , S. Blin , D. Blum , S. Blyth , C. Bordereau , A. Brigatti , R. Brugnera , A. Budano , P. Burgbacher , M. Buscemi , S. Bussino , J. Busto , I. Butorov , A. Cabrera , H. Cai , X. Cai , Y. K. Cai , Z. Y. Cai , A. Cammi , A. Campeny , C. Y. Cao , G. F. Cao , J. Cao , R. Caruso , C. Cerna , I. Chakaberia , J. F. Chang , Y. Chang , H. S. Chen , P. A. Chen , P. P. Chen , S. M. Chen , S. J. Chen , X. R. Chen , Y. W. Chen , Y. X. Chen , Y. Chen , Z. Chen , J. Cheng , Y. P. Cheng , Z. K. Cheng , A. Chepurnov , J. J. Cherwinka , F. Chiarello , D. Chiesa , P. Chimenti , M. C. Chu , A. Chukanov , A. Chuvashova , . Clementi , B. Clerbaux , S. Conforti Di Lorenzo , D. Corti , S. Costa , F. D. Corso , J. P. Cummings , O. Dalager , C. De La Taille , F. S. Deng , J. W. Deng , Z. Deng , Z. Y. Deng , W. Depnering , M. Diaz , X. F. Ding , Y. Y. Ding , B. Dirgantara , S. Dmitrievsky , M. V. Diwan , T. Dohnal , G. Donchenko , J. M. Dong , D. Dornic , E. Doroshkevich , J. Dove , M. Dracos , F. Druillole , S. X. Du , S. Dusini , M. Dvorak , D. A. Dwyer , T. Enqvist , H. Enzmann , A. Fabbri , L. Fajt , D. H. Fan , L. Fan , C. Fang , J. Fang , A. Fatkina , D. Fedoseev , V. Fekete , L. C. Feng , Q. C. Feng , G. Fiorentini , R. Ford , A. Formozov , A. Fournier , S. Franke , J. P. Gallo , H. N. Gan , F. Gao , A. Garfagnini , A. Göttel , C. Genster , M. Giammarchi , A. Giaz , N. Giudice , F. Giuliani , M. Gonchar , G. H. Gong , H. Gong , O. Gorchakov , Y. Gornushkin , M. Grassi , C. Grewing , M. Gromov , V. Gromov , M. H. Gu , W. Q. Gu , X. F. Gu , Y. Gu , M. Y. Guan , N. Guardone , M. Gul , C. Guo , J. Y. Guo , L. Guo , W. L. Guo , X. H. Guo , Y. H. Guo , Z. Guo , M. Haacke , R. W. Hackenburg , P. Hackspacher , C. Hagner , R. Han , Y. Han , S. Hans , M. He , W. He , K. M. Heeger , T. Heinz , Y. K. Heng , R. Herrera , A. Higuera , D. J. Hong , Y. K. Hor , S. J. Hou , Y. B. Hsiung , B. Z. Hu , H. Hu , J. R. Hu , J. Hu , S. Y. Hu , T. Hu , Z. J. Hu , C. H. Huang , G. H. Huang , H. X. Huang , Q. H. Huang , W. H. Huang , X. T. Huang , Y. B. Huang , P. Huber , J. Q. Hui , L. Huo , W. J. Huo , C. Huss , S. Hussain , A. Insolia , A. Ioannisian , D. Ioannisyan , R. Isocrate , D. E. Jaffe , K. L. Jen , X. L. Ji , X. P. Ji , X. Z. Ji , H. H. Jia , J. J. Jia , S. Y. Jian , D. Jiang , X. S. Jiang , R. Y. Jin , X. P. Jing , R. A. Johnson , C. Jollet , D. Jones , J. Joutsenvaara , S. Jungthawan , L. Kalousis , P. Kampmann , L. Kang , M. Karagounis , N. Kazarian , S. H. Kettell , A. Khan , W. Khan , K. Khosonthongkee , P. Kinz , S. Kohn , D. Korablev , K. Kouzakov , M. Kramer , A. Krasnoperov , S. Krokhaleva , Z. Krumshteyn , A. Kruth , N. Kutovskiy , P. Kuusiniemi , B. Lachacinski , T. Lachenmaier , T. J. Langford , J. Lee , J. H. C. Lee , F. Lefevre , L. Lei , R. Lei , R. Leitner , J. Leung , C. Li , D. M. Li , F. Li , F. Li , H. T. Li , H. L. Li , J. Li , J. J. Li , J. Q. Li , K. J. Li , M. Z. Li , N. Li , N. Li , Q. J. Li , Q. J. Li , R. H. Li , S. C. Li , S. F. Li , S. J. Li , T. Li , T. Li , W. D. Li , W. G. Li , X. M. Li , X. N. Li , X. L. Li , X. Q. Li , Y. Li , Y. F. Li , Z. B. Li , Z. Y. Li , H. Liang , H. Liang , J. J. Liang , D. Liebau , A. Limphirat , S. Limpijumnong , C. J. Lin , G. L. Lin , S. X. Lin , T. Lin , Y. H. Lin , J. J. Ling , J. M. Link , I. Lippi , L. Littenberg , B. R. Littlejohn , F. Liu , H. Liu , H. Liu , H. B. Liu , H. D. Liu , H. J. Liu , H. T. Liu , J. C. Liu , J. L. Liu , M. Liu , Q. Liu , Q. Liu , R. X. Liu , S. Y. Liu , S. B. Liu , S. L. Liu , X. W. Liu , Y. Liu , A. Lokhov , P. Lombardi , K. Loo , S. Lorenz , C. Lu , C. Lu , H. Q. Lu , J. B. Lu , J. G. Lu , S. X. Lu , X. X. Lu , B. Lubsandorzhiev , S. Lubsandorzhiev , L. Ludhova , K. B. Luk , F. J. Luo , G. Luo , P. W. Luo , S. Luo , W. M. Luo , V. Lyashuk , Q. M. Ma , S. Ma , X. B. Ma , X. Y. Ma , Y. Q. Ma , Y. Malyshkin , F. Mantovani , Y. J. Mao , S. M. Mari , F. Marini , S. Marium , C. Marshall , C. Martellini , G. Martin-Chassard , D. A. Martinez Caicedo , A. Martini , J. Martino , D. Mayilyan , K. T. McDonald , R. D. McKeown , A. Müller , G. Meng , Y. Meng , A. Meregaglia , E. Meroni , D. Meyhöfer , M. Mezzetto , J. Miller , L. Miramonti , S. Monforte , P. Montini , M. Montuschi , N. Morozov , P. Muralidharan , J. Napolitano , M. Nastasi , D. V. Naumov , E. Naumova , I. Nemchenok , A. Nikolaev , F. P. Ning , Z. Ning , H. Nunokawa , L. Oberauer , J. P. Ochoa-Ricoux , A. Olshevskiy , F. Ortica , H. R. Pan , A. Paoloni , J. Park , N. Parkalian , S. Parmeggiano , S. Patton , T. Payupol , V. 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Zhang , Q. M. Zhang , T. Zhang , X. M. Zhang , X. T. Zhang , Y. Zhang , Y. H. Zhang , Y. M. Zhang , Y. P. Zhang , Y. X. Zhang , Y. Y. Zhang , Y. Y. Zhang , Z. J. Zhang , Z. P. Zhang , Z. Y. Zhang , Z. Y. Zhang , F. Y. Zhao , J. Zhao , R. Zhao , S. J. Zhao , T. C. Zhao , D. Q. Zheng , H. Zheng , M. S. Zheng , Y. H. Zheng , W. R. Zhong , J. Zhou , L. Zhou , N. Zhou , S. Zhou , X. Zhou , J. Zhu , K. J. Zhu , H. L. Zhuang , L. Zong , J. H. Zou

We have developed a neutrino detector with threshold energies from ~0.115 to 105 MeV in a clean detection mode almost completely void of accidental backgrounds. It was initially developed for the NASA $\nu$SOL project to put a solar…

The SNO+ experiment is a large-scale, multipurpose neutrino experiment situated 2 km underground at SNOLAB in Canada. Successor to the Sudbury Neutrino Observatory, the SNO+ detector has inherited much of the original infrastructure…

High Energy Physics - Experiment · Physics 2022-11-11 Benjamin Tam

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

The Jiangmen Underground Neutrino Observatory (JUNO) is a multipurpose neutrino-oscillation experiment, with a 20 kiloton liquid scintillator detector of unprecedented 3\% energy resolution (at 1 MeV) at 700-meter deep underground. There…

Instrumentation and Detectors · Physics 2019-08-13 Miao He

The research of geoneutrino is a new interdisciplinary subject of particle experiments and geo-science. Potassium-40 ($^\text{40}$K) decays contribute roughly 1/3 of the radiogenic heat of the Earth, but it is still missing from the…

High Energy Physics - Experiment · Physics 2020-04-09 Zhe Wang , Shaomin Chen

In a future study of solar neutrinos a special emphasis should be given to the measurement of the fluxes of neutrinos generated in CNO cycle, because this is a direct way to measure with record uncertainty - less than 1% the contribution to…

High Energy Physics - Phenomenology · Physics 2007-05-23 Anatoly Kopylov , Valery Petukhov

Liquid scintillator detectors play a central role in the detection of neutrinos from various sources. In particular, it is the only technique used so far for the precision spectroscopy of sub-MeV solar neutrinos, as demonstrated by the…

Present results and future measurements of solar neutrinos are discussed. The results to date indicate that solar electron neutrinos are changing to other active types and that transitions solely to sterile neutrinos are disfavored. The…

High Energy Physics - Experiment · Physics 2014-11-17 A. B. McDonald

The neutrino long wavelength (just-so) oscillation is revisited as a solution to the solar neutrino problem. We consider just-so scenario in various cases: in the framework of the solar models with relaxed prediction of the boron neutrino…

High Energy Physics - Phenomenology · Physics 2008-11-26 Z. Berezhiani , A. Rossi

The Sudbury Neutrino Observatory (SNO) is a water imaging Cherenkov detector. Its usage of 1000 metric tons of D$_{2}$O as target allows the SNO detector to make a solar-model independent test of the neutrino oscillation hypothesis by…

Nuclear Experiment · Physics 2019-08-14 A. W. P. Poon

Borexino is a solar neutrino experiment designed to observe the 0.86 MeV Be-7 neutrinos emitted in the pp cycle of the sun. Neutrinos will be detected by their elastic scattering on electrons in 100 tons of liquid scintillator. The neutrino…

It is shown that from the data of future solar neutrino experiments (SNO and Super-Kamiokande), in which high-energy $^8\mathrm{B}$ neutrinos will be detected, it will be possible in a model independent way: 1) To reveal the presence of…

High Energy Physics - Phenomenology · Physics 2016-09-01 S. M. Bilenky , C. Giunti

A high-statistics measurement of the neutrinos from a galactic core-collapse supernova is extremely important for understanding the explosion mechanism, and studying the intrinsic properties of neutrinos themselves. In this paper, we…

High Energy Physics - Phenomenology · Physics 2015-05-28 Jia-Shu Lu , Jun Cao , Yu-Feng Li , Shun Zhou

Models of gauged $U(1)_{L_\mu-L_\tau}$ can provide a solution to the long-standing discrepancy between the theoretical prediction for the muon anomalous magnetic moment and its measured value. The extra contribution is due to a new light…

High Energy Physics - Phenomenology · Physics 2021-01-18 Dorian Warren Praia do Amaral , David G. Cerdeno , Patrick Foldenauer , Elliott Reid