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The SNO+ Collaboration reports new results on reactor antineutrino oscillations using data acquired from May 2022 through July 2025. The spectral analysis of a flux dominated by nuclear reactors at 240, 350, and 355 kilometers yields the…

The SoLid experiment, short for Search for Oscillations with a Lithium-6 detector, is a new generation neutrino experiment which tries to address the key challenges for high precision reactor neutrino measurements at very short distances…

Antineutrinos have been proposed as a means of reactor safeguards for more than 30 years and there has been impressive experimental progress in neutrino detection. In this paper we conduct, for the first time, a case study of the…

Instrumentation and Detectors · Physics 2014-02-14 Eric Christensen , Patrick Huber , Patrick Jaffke

This Letter reports a measurement of the flux and energy spectrum of electron antineutrinos from six 2.9~GW$_{th}$ nuclear reactors with six detectors deployed in two near (effective baselines 512~m and 561~m) and one far (1,579~m)…

High Energy Physics - Experiment · Physics 2016-02-17 Daya Bay Collaboration , F. P. An , A. B. Balantekin , H. R. Band , M. Bishai , S. Blyth , I. Butorov , D. Cao , G. F. Cao , J. Cao , W. R. Cen , Y. L. Chan , J. F. Chang , L. C. Chang , Y. Chang , H. S. Chen , Q. Y. Chen , S. M. Chen , Y. X. Chen , Y. Chen , J. H. Cheng , J. Cheng , Y. P. Cheng , J. J. Cherwinka , M. C. Chu , J. P. Cummings , J. de Arcos , Z. Y. Deng , X. F. Ding , Y. Y. Ding , M. V. Diwan , J. Dove , E. Draeger , D. A. Dwyer , W. R. Edwards , S. R. Ely , R. Gill , M. Gonchar , G. H. Gong , H. Gong , M. Grassi , W. Q. Gu , M. Y. Guan , L. Guo , X. H. Guo , R. W. Hackenburg , R. Han , S. Hans , M. He , K. M. Heeger , Y. K. Heng , A. Higuera , Y. K. Hor , Y. B. Hsiung , B. Z. Hu , L. M. Hu , L. J. Hu , T. Hu , W. Hu , E. C. Huang , H. X. Huang , X. T. Huang , P. Huber , G. Hussain , D. E. Jaffe , P. Jaffke , K. L. Jen , S. Jetter , X. P. Ji , X. L. Ji , J. B. Jiao , R. A. Johnson , L. Kang , S. H. Kettell , S. Kohn , M. Kramer , K. K. Kwan , M. W. Kwok , T. Kwok , T. J. Langford , K. Lau , L. Lebanowski , J. Lee , R. T. Lei , R. Leitner , K. Y. Leung , J. K. C. Leung , C. A. Lewis , D. J. Li , F. Li , G. S. Li , Q. J. Li , S. C. Li , W. D. Li , X. N. Li , X. Q. Li , Y. F. Li , Z. B. Li , H. Liang , C. J. Lin , G. L. Lin , P. Y. Lin , S. K. Lin , J. J. Ling , J. M. Link , L. Littenberg , B. R. Littlejohn , D. W. Liu , H. Liu , J. L. Liu , J. C. Liu , S. S. Liu , C. Lu , H. Q. Lu , J. S. Lu , K. B. Luk , Q. M. Ma , X. Y. Ma , X. B. Ma , Y. Q. Ma , D. A. Martinez Caicedo , K. T. McDonald , R. D. McKeown , Y. Meng , I. Mitchell , J. Monari Kebwaro , Y. Nakajima , J. Napolitano , D. Naumov , E. Naumova , H. Y. Ngai , Z. Ning , J. P. Ochoa-Ricoux , A. Olshevski , H. -R. Pan , J. Park , S. Patton , V. Pec , J. C. Peng , L. E. Piilonen , L. Pinsky , C. S. J. Pun , F. Z. Qi , M. Qi , X. Qian , N. Raper , B. Ren , J. Ren , R. Rosero , B. Roskovec , X. C. Ruan , B. B. Shao , H. Steiner , G. X. Sun , J. L. Sun , W. Tang , D. Taychenachev , K. V. Tsang , C. E. Tull , Y. C. Tung , N. Viaux , B. Viren , V. Vorobel , C. H. Wang , M. Wang , N. Y. Wang , R. G. Wang , W. Wang , W. W. Wang , X. Wang , Y. F. Wang , Z. Wang , Z. Wang , Z. M. Wang , H. Y. Wei , L. J. Wen , K. Whisnant , C. G. White , L. Whitehead , T. Wise , H. L. H. Wong , S. C. F. Wong , E. Worcester , Q. Wu , D. M. Xia , J. K. Xia , X. Xia , Z. Z. Xing , J. Y. Xu , J. L. Xu , J. Xu , Y. Xu , T. Xue , J. Yan , C. G. Yang , L. Yang , M. S. Yang , M. T. Yang , M. Ye , M. Yeh , B. L. Young , G. Y. Yu , Z. Y. Yu , S. L. Zang , L. Zhan , C. Zhang , H. H. Zhang , J. W. Zhang , Q. M. Zhang , Y. M. Zhang , Y. X. Zhang , Y. M. Zhang , Z. J. Zhang , Z. Y. Zhang , Z. P. Zhang , J. Zhao , Q. W. Zhao , Y. F. Zhao , Y. B. Zhao , L. Zheng , W. L. Zhong , L. Zhou , N. Zhou , H. L. Zhuang , J. H. Zou

Precisely measuring $\theta_{13}$ is one of the highest priority in neutrino oscillation study. Reactor experiments can cleanly determine $\theta_{13}$. Past reactor neutrino experiments are reviewed and status of next precision…

High Energy Physics - Experiment · Physics 2007-12-07 Jun Cao

We review standard and non-standard neutrino physics probes that are based on nuclear measurements. We pay special attention on the discussion of prospects to extract new physics at prominent rare event measurements looking for…

High Energy Physics - Phenomenology · Physics 2019-11-28 D. K. Papoulias , T. S. Kosmas , Y. Kuno

The measurement of the last undetermined neutrino mixing angle \theta_{13} is the main goal of the future experimental research on neutrino oscillations. At present, \theta_{13} is only known to be much smaller than the two other mixing…

High Energy Physics - Experiment · Physics 2007-05-23 Dario Motta

The IceCube Neutrino Observatory at the South Pole has measured the diffuse astrophysical neutrino flux up to ~PeV energies and is starting to identify first point source candidates. The next generation facility, IceCube-Gen2, aims at…

High Energy Astrophysical Phenomena · Physics 2021-07-20 Steffen Hallmann , Brian Clark , Christian Glaser , Daniel Smith

We discuss several new ideas for reactor neutrino oscillation experiments with a Large Liquid Scintillator Detector. We consider two different scenarios for a measurement of the small mixing angle $\theta_{13}$ with a mobile $\bar{\nu}_e$…

High Energy Physics - Phenomenology · Physics 2010-10-27 Joachim Kopp , Manfred Lindner , Alexander Merle , Mark Rolinec

We show data from a new type of detector that can be used to determine neutron flux, energy distribution, and direction of neutron motion for both fast and thermal neutrons. Many neutron detectors are plagued by large backgrounds from…

The High Energy Physics community can benefit from a natural synergy in research activities into next-generation large-scale water and scintillator neutrino detectors, now being studied for remote reactor monitoring, discovery and exclusion…

Instrumentation and Detectors · Physics 2022-04-22 T. Akindele , T. Anderson , E. Anderssen , M. Askins , M. Bohles , A. J. Bacon , Z. Bagdasarian , A. Baldoni , A. Barna , N. Barros , L. Bartoszek , A. Bat , E. W. Beier , T. Benson , M. Bergevin , A. Bernstein , B. Birrittella , E. Blucher , J. Boissevain , R. Bonventre , J. Borusinki , E. Bourret , D. Brown , E. J. Callaghan , J. Caravaca , M. Chen , D. F. Cowen , B. Crow , F. Dalnoki-Veress , D. Danielson , S. Dazeley , M. Diwan , Z. Djurcic , A. Druetzler , S. Dye , S. T. Dye , J. Eisch , A. Elagin , T. Enqvist , Andrew Erlandson , U. Fahrendholz , A. Fienberg , V. Fischer , K. Frankiewicz , M. V. Garzelli , D. Gooding , C. Graham , C. Grant , J. Griskevich , D. Guffanti , C. Hagner , A. Hallin , J. He , J. Hecla , C. M. Jackson , R. Jiang , I. Jovanovic , T. Kaptanoglu , M. Keenan , P. Keener , E. Kemp , J. R. Klein , Yu. G. Kolomensky , C. Kraus , F. Krennrich , T. Kroupa , P. Kunkle , T. Kutter , T. Lachenmaier , B. Land , K. Lande , J. Learned , J. G. Learned , L. Lebanowski , V. Li , V. A. Li , V. Lozza , L. Ludhova , Rupak Mahapatra , M. Malek , S. Manecki , J. Maneira , C. Mariani , J. Maricic , A. Marino , P. Marr-Laundrie , J. Martyn , A. Mastbaum , C. Mauger , M. Mayer , J. Migenda , J. Moore , F. Moretti , A. Mullen , J. Napolitano , B. Naranjo , S. Naugle , E. Neights , M. Newcomer , M. Nieslony , A. Nikolica , K. Nishimura , B. O'Meara , L. Oberauer , J. P. Ochoa-Ricoux , K. Ogren , G. D. Orebi Gann , J. Ouellet , L. Oxborough , A. Papatyi , B. Paulos , T. Pershing , S. T. Petcov , L. Pickard , G. Pronost , R. Rosero , J. Saba , L. Sabarots , M. C. Sanchez , J. Sawatzki , S. Schoppmann , J. Sensenig , S. H. Seo , S. Seo , V. Shebalin , M. Smiley , M. Smy , H. Song , A. Stahl , H. Steiger , M. R. Stock , F. Suekane , H. Sunej , F. Sutanto , R. Svoboda , E. Tiras , W. H. Trzaska , M. Tzanov , M. Vagins , R. Van Berg , G. Varner , V. Veeraraghavan , S. Ventura , C. Vilela , R. B. Vogelaar , B. Walsh , Z. Wang , J. Wang , W. Wang , G. Wendel , D. Westphal , M. Wetstein , A. Wilhelm , M. J. Wilking , L. Winslow , P. Wittich , S. Wolcott , B. Wonsak , E. Worcester , M. Wurm , G. Yang , M. Yeh , E. D. Zimmerman , S. Zsoldos , K. Zuber

With new forthcoming intense neutrino beams, for the study of neutrino oscillations, it is possible to consider other physics experiments that can be done with these extreme neutrino fluxes available close to the source.

High Energy Physics - Experiment · Physics 2009-10-31 N. Solomey

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…

Building on earlier studies, we investigate the possibility to determine the type of neutrino mass spectrum (i.e., "the neutrino mass hierarchy") in a high statistics reactor electron antineutrino experiment with a relatively large…

High Energy Physics - Phenomenology · Physics 2011-03-28 Pomita Ghoshal , S. T. Petcov

Measuring the neutrino mixing parameter \ensuremath{\sin^2\theta_{13}} to the sub-percent precision level could be necessary in the next ten years for the precision unitary test of the PMNS matrix. In this work, we discuss the possibility…

High Energy Physics - Experiment · Physics 2023-03-17 Jinnan Zhang , Jun Cao

The down-going atmospheric \nu_{\mu} and {\bar{\nu_{\mu}}} fluxes can be significantly altered due to the presence of eV^2-scale active-sterile oscillations. We study the sensitivity of a large Liquid Argon detector and a large magnetized…

High Energy Physics - Phenomenology · Physics 2013-05-30 Raj Gandhi , Pomita Ghoshal

A joint determination of the reactor antineutrino spectra resulting from the fission of $^{235}$U and $^{239}$Pu has been carried out by the Daya Bay and PROSPECT collaborations. This Letter reports the level of consistency of $^{235}$U…

Nuclear Experiment · Physics 2022-02-24 Daya Bay Collaboration , PROSPECT Collaboration , F. P. An , M. Andriamirado , A. B. Balantekin , H. R. Band , C. D. Bass , D. E. Bergeron , D. Berish , M. Bishai , S. Blyth , N. S. Bowden , C. D. Bryan , G. F. Cao , J. Cao , J. F. Chang , Y. Chang , H. S. Chen , S. M. Chen , Y. Chen , Y. X. Chen , J. Cheng , Z. K. Cheng , J. J. Cherwinka , M. C. Chu , T. Classen , A. J. Conant , J. P. Cummings , O. Dalager , G. Deichert , A. Delgado , F. S. Deng , Y. Y. Ding , M. V. Diwan , T. Dohnal , M. J. Dolinski , D. Dolzhikov , J. Dove , M. Dvorak , D. A. Dwyer , A. Erickson , B. T. Foust , J. K. Gaison , A. Galindo-Uribarri , J. P. Gallo , C. E. Gilbert , M. Gonchar , G. H. Gong , H. Gong , M. Grassi , W. Q. Gu , J. Y. Guo , L. Guo , X. H. Guo , Y. H. Guo , Z. Guo , R. W. Hackenburg , S. Hans , A. B. Hansell , M. He , K. M. Heeger , B. Heffron , Y. K. Heng , Y. K. Hor , Y. B. Hsiung , B. Z. Hu , J. R. Hu , T. Hu , Z. J. Hu , H. X. Huang , J. H. Huang , X. T. Huang , Y. B. Huang , P. Huber , J. Koblanski , D. E. Jaffe , S. Jayakumar , K. L. Jen , X. L. Ji , X. P. Ji , R. A. Johnson , D. C. Jones , L. Kang , S. H. Kettell , S. Kohn , M. Kramer , O. Kyzylova , C. E. Lane , T. J. Langford , J. LaRosa , J. Lee , J. H. C. Lee , R. T. Lei , R. Leitner , J. K. C. Leung , F. Li , H. L. Li , J. J. Li , Q. J. Li , R. H. Li , S. Li , S. C. Li , W. D. Li , X. N. Li , X. Q. Li , Y. F. Li , Z. B. Li , H. Liang , C. J. Lin , G. L. Lin , S. Lin , J. J. Ling , J. M. Link , L. Littenberg , B. R. Littlejohn , J. C. Liu , J. L. Liu , J. X. Liu , C. Lu , H. Q. Lu , X. Lu , K. B. Luk , B. Z. Ma , X. B. Ma , X. Y. Ma , Y. Q. Ma , R. C. Mandujano , J. Maricic , C. Marshall , K. T. McDonald , R. D. McKeown , M. P. Mendenhall , Y. Meng , A. M. Meyer , R. Milincic , P. E. Mueller , H. P. Mumm , J. Napolitano , D. Naumov , E. Naumova , R. Neilson , T. M. T. Nguyen , J. A. Nikkel , S. Nour , J. P. Ochoa-Ricoux , A. Olshevskiy , J. L. Palomino , H. -R. Pan , J. Park , S. Patton , J. C. Peng , C. S. J. Pun , D. A. Pushin , F. Z. Qi , M. Qi , X. Qian , N. Raper , J. Ren , C. Morales Reveco , R. Rosero , B. Roskovec , X. C. Ruan , M. Searles , H. Steiner , J. L. Sun , P. T. Surukuchi , T. Tmej , K. Treskov , W. -H. Tse , C. E. Tull , M. A. Tyra , R. L. Varner , D. Venegas-Vargas , B. Viren , V. Vorobel , C. H. Wang , J. Wang , M. Wang , N. Y. Wang , R. G. Wang , W. Wang , W. Wang , X. Wang , Y. Wang , Y. F. Wang , Z. Wang , Z. Wang , Z. M. Wang , P. B. Weatherly , H. Y. Wei , L. H. Wei , L. J. Wen , K. Whisnant , C. White , J. Wilhelmi , H. L. H. Wong , A. Woolverton , E. Worcester , D. R. Wu , F. L. Wu , Q. Wu , W. J. Wu , D. M. Xia , Z. Q. Xie , Z. Z. Xing , H. K. Xu , J. L. Xu , T. Xu , T. Xue , C. G. Yang , L. Yang , Y. Z. Yang , H. F. Yao , M. Ye , M. Yeh , B. L. Young , H. Z. Yu , Z. Y. Yu , B. B. Yue , V. Zavadskyi , S. Zeng , Y. Zeng , L. Zhan , C. Zhang , F. Y. Zhang , H. H. Zhang , J. W. Zhang , Q. M. Zhang , S. Q. Zhang , X. Zhang , X. T. Zhang , Y. M. Zhang , Y. X. Zhang , Y. Y. Zhang , Z. J. Zhang , Z. P. Zhang , Z. Y. Zhang , J. Zhao , R. Z. Zhao , L. Zhou , H. L. Zhuang , J. H. Zou

Numerous experimental efforts have shown that antineutrino-based monitoring provides a non-intrusive means to estimate the fissile content and relative thermal power of nuclear reactors for nonproliferation. Until now, there have been no…

Instrumentation and Detectors · Physics 2019-07-23 Viacheslav A. Li

We propose applications of Radioactive Ion Beam facilities to investigate physics beyond the Standard Model. In particular, we focus on the possible measurement of coherent neutrino-nucleus scattering and on a search for sterile neutrinos,…

High Energy Physics - Phenomenology · Physics 2015-06-04 Catalina Espinoza , Rimantas Lazauskas , Cristina Volpe

Neutrinos are elementary particles that interact only very weakly with matter. Neutrino experiments are, therefore, usually big, with masses in the multi-tonne range. The thresholdless interaction of coherent elastic scattering of neutrinos…