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Related papers: Fast Muon Simulation in the JUNO Central Detector

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We propose the first practical method to detect atmospheric tau neutrino appearance at sub-GeV energies, which would be an important test of $\nu_\mu \rightarrow \nu_\tau$ oscillations and of new-physics scenarios. In the Jiangmen…

High Energy Physics - Phenomenology · Physics 2025-05-15 Stephan A. Meighen-Berger , John F. Beacom , Nicole F. Bell , Matthew J. Dolan

The Jiangmen Underground Neutrino Observatory (JUNO) is an experiment designed to study neutrino oscillations. Determination of neutrino mass ordering and precise measurement of neutrino oscillation parameters $\sin^2 2\theta_{12}$, $\Delta…

The performance of a large-scale water Cherenkov neutrino telescope relies heavily on the transparency of the surrounding water, quantified by its level of light absorption and scattering. A pathfinder experiment was carried out to measure…

Instrumentation and Methods for Astrophysics · Physics 2023-06-28 Fan Hu , Zhenyu Wei , Wei Tian , Ziping Ye , Fuyudi Zhang , Zhengyang Sun , Wei Zhi , Qichao Chang , Qiao Xue , Zhuo Li , Donglian Xu

It was recently shown that standard sub-GeV dark matter candidates can be effectively probed by large neutrino observatories via annual modulation of the total photomultiplier hit rate. That work focused on the production of light by the…

High Energy Physics - Phenomenology · Physics 2025-12-17 Lillian Santos-Olmsted , Rebecca K. Leane , Carlos Blanco , John F. Beacom

In the case of underground experiments for neutrino physics or rare event searches, the background caused by cosmic muons contributes significantly and therefore must be identified and rejected. We proposed and optimized a new detector…

Instrumentation and Detectors · Physics 2017-04-05 Y. P. Zhang , J. L. Xu , H. Q. Lu , P. Zhang , C. C. Zhang , C. G. Yang

Photomultiplier tubes (PMTs) are widely used in particle experiments for photon detection. PMT waveform analysis is crucial for high-precision measurements of the position and energy of incident particles in liquid scintillator (LS)…

Instrumentation and Detectors · Physics 2024-12-02 Wei Jiang , Guihong Huang , Zhen Liu , Wuming Luo , Liangjian Wen , Jianyi Luo

The main goal of the JUNO experiment is to determine the neutrino mass ordering with a 20kt liquid-scintillator detector. The 20-inch PMT and its 1F3 (one for three) electronics are crucial to realize the excellent energy resolution of at…

Experiments such as mu2e (FNAL, USA) and COMET (KEK, Japan), seeking the direct muon-to-electron conversion as part of the study of Charged Leptons Flavor Violation processes, should have a extremely high, up-to 99.99\%, efficiency muon…

Instrumentation and Detectors · Physics 2023-10-04 A. Artikov , V. Baranov , A. Boikov , D. Chokheli , Yu. I. Davydov , V. Glagolev , A. Simonenko , Z. Tsamalaidze , I. Vasilyev , I. Zimin

The Jiangmen Underground Neutrino Observatory (JUNO), a 20~kton multi-purpose low background Liquid Scintillator (LS) detector, was proposed primarily to determine the neutrino mass ordering. To suppress the radioactivity from the…

Instrumentation and Detectors · Physics 2024-02-22 C. Li , B. Wang , Y. Liu , C. Guo , Y. P. Zhang , J. C. Liu , Q. Tang , T. Y. Guan , C. G. Yang

LiquidO is an innovative radiation detector concept. The core idea is to exploit stochastic light confinement in a highly scattering medium to self-segment the detector volume. In this paper, we demonstrate event-by-event muon tracking in a…

In order to develop a high spatial resolution (micron level) thermal neutron detector, a detector assembly composed of cerium doped lithium glass microfibers, each with a diameter of 1\,$\mu$m, is proposed, where the neutron absorption…

Instrumentation and Detectors · Physics 2016-06-14 Song Yushou , Joseph Conner , Xiaodong Zhang , Jason P. Hayward

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. Pec , D. Pedretti , Y. T. Pei , N. Pelliccia , A. G. Peng , H. P. Peng , J. C. Peng , F. Perrot , P. A. Petitjean , L. F. Pineres Rico , A. Popov , P. Poussot , W. Pratumwan , E. Previtali , C. S. J. Pun , F. Z. Qi , M. Qi , S. Qian , X. Qian , X. H. Qian , H. Qiao , Z. H. Qin , S. K. Qiu , M. Rajput , G. Ranucci , N. Raper , A. Re , H. Rebber , A. Rebii , B. Ren , J. Ren , C. M. Reveco , T. Rezinko , B. Ricci , M. Robens , M. Roche , N. Rodphai , L. Rohwer , A. Romani , R. Rosero , B. Roskovec , C. Roth , X. C. Ruan , X. D. Ruan , S. Rujirawat , A. Rybnikov , A. Sadovsky , P. Saggese , G. Salamanna , A. Sangka , N. Sanguansak , U. Sawangwit , J. Sawatzki , F. Sawy , M. Schever , J. Schuler , C. Schwab , K. Schweizer , D. Selivanov , A. Selyunin , A. Serafini , G. Settanta , M. Settimo , M. Shahzad , G. Shi , J. Y. Shi , Y. J. Shi , V. Shutov , A. Sidorenkov , F. Simkovic , C. Sirignano , J. Siripak , M. Sisti , M. Slupecki , M. Smirnov , O. Smirnov , T. Sogo-Bezerra , J. Songwadhana , B. Soonthornthum , A. Sotnikov , O. Sramek , W. Sreethawong , A. Stahl , L. Stanco , K. Stankevich , D. Stefanik , H. Steiger , H. Steiner , J. Steinmann , M. Stender , V. Strati , A. Studenikin , G. X. Sun , L. T. Sun , J. L. Sun , S. F. Sun , X. L. Sun , Y. J. Sun , Y. Z. Sun , N. Suwonjandee , M. Szelezniak , J. Tang , Q. Tang , Q. Tang , X. Tang , A. Tietzsch , I. Tkachev , T. Tmej , K. Treskov , G. Troni , W. Trzaska , W. -H. Tse , C. E. Tull , C. Tuve , S. van Waasen , J. Vanden Boom , N. Vassilopoulos , V. Vedin , G. Verde , M. Vialkov , B. Viaud , B. Viren , C. Volpe , V. Vorobel , L. Votano , P. Walker , C. Wang , C. H. Wang , E. Wang , G. L. Wang , J. Wang , J. Wang , K. Y. Wang , L. Wang , M. F. Wang , M. Wang , M. Wang , N. Y. Wang , R. G. Wang , S. G. Wang , W. Wang , W. Wang , W. S. Wang , X. Wang , X. Y. Wang , Y. Wang , Y. Wang , Y. Wang , Y. F. Wang , Y. G. Wang , Y. M. Wang , Y. Q. Wang , Z. Wang , Z. Wang , Z. M. Wang , Z. Y. Wang , A. Watcharangkool , H. Y. Wei , L. H. Wei , W. Wei , Y. D. Wei , L. J. Wen , K. Whisnant , C. G. White , C. Wiebusch , S. C. F. Wong , H. L. H. Wong , B. Wonsak , E. Worcester , C. H. Wu , D. R. Wu , F. L. Wu , Q. Wu , W. J. Wu , Z. Wu , M. Wurm , J. Wurtz , C. Wysotzki , Y. F. Xi , D. M. Xia , Y. G. Xie , Z. Q. Xie , Z. Z. Xing , D. L. Xu , F. R. Xu , H. K. Xu , J. L. Xu , J. Xu , M. H. Xu , T. Xu , Y. Xu , Y. Xu , T. Xue , B. J. Yan , X. B. Yan , Y. P. Yan , A. B. Yang , C. G. Yang , H. Yang , J. Yang , L. Yang , X. Y. Yang , Y. F. Yang , Y. Z. Yang , H. F. Yao , Z. Yasin , J. X. Ye , M. Ye , U. Yegin , M. Yeh , F. Yermia , P. H. Yi , Z. Y. You , B. L. Young , B. X. Yu , C. X. Yu , C. Y. Yu , H. Z. Yu , M. Yu , X. H. Yu , Z. Y. Yu , C. Z. Yuan , Y. Yuan , Z. X. Yuan , Z. Y. Yuan , B. B. Yue , N. Zafar , A. Zambanini , P. Zeng , S. Zeng , T. X. Zeng , Y. D. Zeng , L. Zhan , C. Zhang , F. Y. Zhang , G. Q. Zhang , H. H. Zhang , H. Q. Zhang , J. Zhang , J. B. Zhang , J. W. Zhang , P. 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

Large liquid scintillator detectors, such as JUNO, present a new opportunity to study neutral current events from the low-energy end of the atmospheric neutrinos, and possible new physics signals due to light dark matter. We carefully study…

High Energy Physics - Phenomenology · Physics 2022-12-06 Bhavesh Chauhan , Basudeb Dasgupta , Amol Dighe

We carried out a study of neutrino detection at the experimental fast reactor JOYO using a 0.76 tons gadolinium loaded liquid scintillator detector. The detector was set up on the ground level at 24.3m from the JOYO reactor core of 140MW…

The detectors based on the liquid scintillator (LS) monitored by an array of photo-multiplier tubes (PMT) are often used in low energy experiments such as neutrino oscillation studies and search for dark matter. Detectors of this kind…

Liquid scintillator (LS) will be adopted as the detector material in JUNO (Jiangmen Underground Neutrino Observatory). The energy resolution requirement of JUNO is 3%, which has never previously been reached. To achieve this energy…

The Taishan Antineutrino Observatory (TAO) is a liquid-scintillator satellite experiment of the Jiangmen Underground Neutrino Observatory (JUNO) to measure the reference reactor neutrino spectrum with unprecented energy resolution. We use…

High Energy Physics - Experiment · Physics 2025-04-22 Xuewei Liu , Wei Dou , Benda Xu , Hanwen Wang , Guofu Cao

The Jiangmen Underground Neutrino Observatory (JUNO) in southern China is designed to study neutrinos from nuclear reactors and natural sources to address fundamental questions in neutrino physics. Achieving its goals requires continuous…

The Deep Underground Neutrino Experiment (DUNE) Far Detector (FD) will be formed by four 10-kton Liquid Argon (LAr) Time Projection Chambers (TPC) using both single and dual-phase technology. The dual-phase technology foreseen the charge…

Instrumentation and Detectors · Physics 2019-11-19 Chiara Lastoria

It has been proposed to determine the mass hierarchy of neutrinos by exploiting the beat between the oscillation frequencies corresponding to the two neutrino mass squared differences. JUNO is based on this concept and uses a large liquid…

High Energy Physics - Phenomenology · Physics 2017-10-23 David V. Forero , Rebekah Hawkins , Patrick Huber