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The Spallation Neutron Source (SNS) at Oak Ridge National Laboratory, Tennessee, provides an intense flux of neutrinos in the few tens-of-MeV range, with a sharply-pulsed timing structure that is beneficial for background rejection. In this…

The Spallation Neutron Source (SNS) at Oak Ridge National Laboratory provides an intense, high-quality source of neutrinos from pion decay at rest. This source was recently used for the first measurements of coherent elastic…

High Energy Physics - Experiment · Physics 2021-11-16 P. S. Barbeau , Yu. Efremenko , K. Scholberg

The COHERENT experiment located in Neutrino Alley at the Spallation Neutron Source (SNS), Oak Ridge National Laboratory (ORNL), has made the world's first two measurements of coherent elastic neutrino-nucleus scattering (CEvNS), on CsI and…

High Energy Physics - Experiment · Physics 2022-04-12 D. Akimov , S. Alawabdeh , P. An , A. Arteaga , C. Awe , P. S. Barbeau , C. Barry , B. Becker , V. Belov , I. Bernardi , M. A. Blackston , L. Blokland , C. Bock , B. Bodur , A. Bolozdynya , R. Bouabid , A. Bracho , J. Browning , B. Cabrera-Palmer , N. Chen , D. Chernyak , E. Conley , J. Daughhetee , J. Daughtry , E. Day , M. del Valle Coello , J. Detwiler , K. Ding , M. R. Durand , Y. Efremenko , S. R. Elliott , L. Fabris , M. Febbraro , W. Fox , J. Galambos , A. Gallo Rosso , A. Galindo-Uribarri , C. Gilbert , M. P. Green , K. R. Hansen , B. Harris , M. R. Heath , S. Hedges , R. Henderson , D. Hoang , C. Hughes , M. Hughes , E. Iverson , P. Jairam , B. A. Johnson , T. Johnson , L. Kaufman , A. Khromov , A. Konovalov , J. Koros , E. Kozlova , A. Kumpan , L. Li , J. T. Librande , J. M. Link , J. Liu , A. Major , K. Mann , D. M. Markoff , J. Mastroberti , J. Mattingly , O. McGoldrick , M. McIntyre , Y. A. Melikyan , M. Mishra , P. E. Mueller , J. Newby , D. S. Parno , A. Penne , S. I. Penttila , D. Pershey , C. Prior , D. Radford , F. Rahman , R. Rapp , H. Ray , J. Raybern , O. Razuvaeva , D. Reyna , G. C. Rich , D. Rimal , J. Ross , A. Rouzky , D. Rudik , J. Runge , D. J. Salvat , A. M. Salyapongse , J. Sander , K. Scholberg , P. Siehien , A. Shakirov , G. Simakov , G. Sinev , W. M. Snow , V. Sosnovstsev , J. Steele , A. Strasbaugh Hjelmstad , T. Subedi , B. Suh , R. Tayloe , K. Tellez-Giron-Flores , R. T. Thornton , I. Tolstukhin , S. Trotter , F. Tsai , Y. -T. Tsai , E. Ujah , J. Vanderwerp , E. van Nieuwenhuizen , R. L. Varner , S. Vasquez , C. J. Virtue , G. Visser , K. Walkup , J. Wang , E. M. Ward , C. Wiseman , T. Wongjirad , D. Wu , J. Yang , Y. Yang , Y. -R. Yen , J. Yoo , C. -H. Yu , J. Zettlemoyer , S. Zhang

The Spallation Neutron Source (SNS) at Oak Ridge National Laboratory is a pulsed source of neutrons and, as a byproduct of this operation, an intense source of pulsed neutrinos via stopped-pion decay. The COHERENT collaboration uses this…

We study the possibility of using CsI[Na] scintillators as an advantageous target for the detection of coherent elastic neutrino-nucleus scattering (CENNS), using the neutrino emissions from the SNS spallation source at Oak Ridge National…

Instrumentation and Detectors · Physics 2014-12-04 J. I. Collar , N. E. Fields , E. Fuller , M. Hai , T. W. Hossbach , J. L. Orrell , G. Perumpilly , B. Scholz

The Spallation Neutron Source (SNS) is a pulsed source of neutrons and, as a byproduct of this operation, an intense source of neutrinos via stopped-pion decay. The COHERENT collaboration uses this source to investigate coherent elastic…

Instrumentation and Detectors · Physics 2019-10-03 Rebecca Rapp

The Spallation Neutron Source (SNS), located at Oak Ridge Laboratory in the United States, will be coming online over the next few years. In addition to producing fluxes of high-intensity neutrons, the interaction of the proton beam with…

High Energy Physics - Experiment · Physics 2019-08-13 Heather Ray

The Oak Ridge National Laboratory (ORNL) Spallation Neutron Source (SNS) First Target Station (FTS), used by the COHERENT experiment, provides an intense and extremely high-quality source of pulsed stopped-pion neutrinos, with energies up…

A method of measurements of the environmental neutron background at the Baksan Neutrino Observatory of the INR RAS are described. Measurements were done by using of a proportional counter filled with mixture of Ar(2 at)+$^3$He(4 at). The…

We report in situ neutron background measurements at the Kuo-Sheng Reactor Neutrino Laboratory (KSNL) by a hybrid neutron detector (HND) with a data size of 33.8 days under identical shielding configurations as during the neutrino physics…

The Spallation Neutron Source (SNS) at Oak Ridge National Laboratory, Tennessee, provides an intense flux of neutrinos in the few tens-of-MeV range, with a sharply-pulsed timing structure that is beneficial for background rejection. In this…

Cosmic-Ray Neutron Sensing (CRNS) is a novel technique for determining environmental water content by measuring albedo neutrons in the epithermal to fast energy range with moderated neutron detectors. We have investigated the response…

Instrumentation and Detectors · Physics 2018-08-01 M. Köhli , M. Schrön , U. Schmidt

We report the first measurement of coherent elastic neutrino-nucleus scattering (\cevns) on argon using a liquid argon detector at the Oak Ridge National Laboratory Spallation Neutron Source. Two independent analyses prefer \cevns over the…

The COHERENT collaboration is deploying a suite of low-energy detectors in a low-background corridor of the ORNL Spallation Neutron Source (SNS) to measure coherent elastic neutrino-nucleus scattering (CEvNS) on an array of nuclear targets…

Instrumentation and Detectors · Physics 2018-07-01 R. Tayloe

The COHERENT collaboration reports the most precise measurement of the coherent elastic neutrino-nucleus scattering cross section to date. This measurement was performed with COHERENT's germanium detector array, Ge-Mini, at the Spallation…

The COHERENT experiment measures neutrino-induced recoils from coherent elastic neutrino-nucleus scattering (CEvNS) with multiple nuclear targets at the Spallation Neutron Source (SNS) at the Oak Ridge National Laboratory (ORNL), USA.…

High Energy Physics - Experiment · Physics 2026-02-18 M. Adhikari , M. Ahn , D. Amaya Matamoros , P. S. Barbeau , V. Belov , I. Bernardi , C. Bock , A. Bolozdynya , R. Bouabid , J. Browning , B. Cabrera-Palmer , N. Cedarblade-Jones , S. Chen , A. I. Colón Rivera , V. da Silva , J. Daughhetee , Y. Efremenko , S. R. Elliott , A. Erlandson , L. Fabris , M. L. Fischer , S. Foster , A. Galindo-Uribarri , E. Granados Vazquez , M. P. Green , B. Hackett , J. Hakenmüller , M. Harada , M. R. Heath , S. Hedges , Y. Hino , H. Huang , W. Huang , H. Jeong , B. A. Johnson , T. Johnson , A. Khromov , D. Kim , L. Kong , A. Konovalov , Y. Koshio , E. Kozlova , A. Kumpan , O. Kyzylova , Y. Lee , S. M. Lee , G. Li , L. Li , Z. Li , J. M. Link , J. Liu , Q. Liu , X. Lu , M. Luxnat , D. M. Markoff , J. Mattingly , H. McLaurin , K. McMichael , N. Meredith , Y. Nakajima , F. Nakanishi , J. Newby , B. Nolan , J. O'Reilly , A. Orvedahl , D. S. Parno , D. Pérez-Loureiro , D. Pershey , C. G. Prior , J. Queen , R. Rapp , H. Ray , O. Razuvaeva , D. Reyna , D. Rudik , J. Runge , D. J. Salvat , J. Sander , K. Scholberg , H. Sekiya , J. Seligman , A. Shakirov , G. Simakov , J. Skweres , W. M. Snow , V. Sosnovtsev , Q. Stefan , M. Stringer , C. Su , T. Subedi , B. Suh , B. Sur , R. Tayloe , Y. -T. Tsai , J. Vaccaro , E. E. van Nieuwenhuizen , C. J. Virtue , G. Visser , K. Walkup , E. M. Ward , R. Wendell , T. Wongjirad , C. Yang , Y. Yang , J. Yoo , C. -H. Yu , Y. Yu , A. Zaalishvili , J. Zettlemoyer , Y. Zheng

Coherent elastic neutrino-nucleus scattering (CE$\nu$NS) is a dominant low-energy neutrino interaction that remains experimentally challenging due to its weak-scale cross section and the small nuclear recoil energies involved. This thesis…

Instrumentation and Detectors · Physics 2026-03-18 Leire Larizgoitia

The Short-Baseline Near Detector (SBND), the near detector in the Short-Baseline Neutrino Program at Fermi National Accelerator Laboratory, is located just 110 m from the Booster Neutrino Beam target. Thanks to this close proximity,…

High Energy Physics - Experiment · Physics 2026-04-22 P. Abratenko , R. Acciarri , C. Adams , L. Aliaga-Soplin , O. Alterkait , R. Alvarez-Garrote , D. Andrade Aldana , C. Andreopoulos , A. Antonakis , L. Arellano , J. Asaadi , S. Balasubramanian , A. Barnard , V. Basque , J. Bateman , A. Beever , E. Belchior , M. Betancourt , A. Bhat , M. Bishai , A. Blake , B. Bogart , D. Brailsford , A. Brandt , S. Brickner , M. B. Brunetti , L. Camilleri , D. Caratelli , D. Carber , B. Carlson , M. F. Carneiro , R. Castillo , F. Cavanna , A. Chappell , H. Chen , S. Chung , M. F. Cicala , R. Coackley , J. I. Crespo-Anadón , C. Cuesta , Y. Dabburi , O. Dalager , M. Dall'Olio , R. Darby , M. Del Tutto , Z. Djurcic , V. do Lago Pimentel , S. Dominguez-Vidales , M. Dubnowsi , K. Duffy , S. Dytman , A. Ereditato , J. J. Evans , A. Ezeribe , C. Fan , A. Filkins , B. Fleming , W. Foreman , D. Franco , G. Fricano , I. Furic , A. Furmanski , S. Gao , D. Garcia-Gamez , S. Gardiner , G. Ge , I. Gil-Botella , S. Gollapinni , P. Green , W. C. Griffith , P. Guzowski , L. Hagaman , A. Hamer , P. Hamilton , R. Harnik , A. Hergenhan , M. Hernandez-Morquecho , C. Hilgenberg , P. Holanda , B. Howard , Z. Imani , C. James , R. S. Jones , M. Jung , T. Junk , D. Kalra , G. Karagiorgi , L. Kashur , K. J. Kelly , W. Ketchum , M. King , J. Klein , L. Kotsiopoulou , S. Kr Das , T. Kroupova , V. A. Kudryavtsev , N. Lane , J. Larkin , H. Lay , R. LaZur , J. -Y. Li , K. Lin , B. R. Littlejohn , L. Liu , W. C. Louis , X. Lu , X. Luo , A. Machado , P. Machado , C. Mariani , F. Marinho , J. Marshall , A. Mastbaum , K. Mavrokoridis , N. McConkey , B. McCusker , J. Mclaughlin , D. Mendez , M. Mooney , A. F. Moor , G. Moreno Granados , C. A. Moura , J. Mueller , S. Mulleriababu , A. Navrer-Agasson , M. Nebot-Guinot , V. C. L. Nguyen , F. J. Nicolas-Arnaldos , J. Nowak , S. B. Oh , N. Oza , O. Palamara , N. Pallat , V. Pandey , A. Papadopoulou , H. B. Parkinson , J. Paton , L. Paulucci , Z. Pavlovic , D. Payne , L. Pelegrina Gutiérrez , O. L. G. Peres , J. Plows , F. Psihas , G. Putnam , X. Qian , R. Rajagopalan , P. Ratoff , H. Ray , M. Reggiani-Guzzo , M. Roda , J. Romeo-Araujo , M. Ross-Lonergan , N. Rowe , P. Roy , I. Safa , A. Sanchez-Castillo , P. Sanchez-Lucas , D. W. Schmitz , A. Schneider , A. Schukraft , H. Scott , E. Segreto , J. Sensenig , M. Shaevitz , B. Slater , J. Smith , M. Soares-Nunes , M. Soderberg , S. Söldner-Rembold , J. Spitz , M. Stancari , T. Strauss , A. M. Szelc , C. Thorpe , D. Totani , M. Toups , C. Touramanis , L. Tung , G. A. Valdiviesso , R. G. Van de Water , A. Vázquez Ramos , L. Wan , M. Weber , H. Wei , T. Wester , A. White , A. Wilkinson , P. Wilson , T. Wongjirad , E. Worcester , M. Worcester , S. Yadav , E. Yandel , T. Yang , L. Yates , B. Yu , H. Yu , J. Yu , B. Zamorano , J. Zennamo , C. Zhang
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