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Recent developments in the field of liquid scintillator chemistry and fast-timing photosensors paved the way for a new generation of large-scale detectors capable of tackling a broad range of physics issues. Water-based Liquid Scintillator…

Instrumentation and Detectors · Physics 2018-09-18 Vincent Fischer

Next-generation large-scale neutrino detectors, from Eos, at the 1 tonne scale, to Theia, at the 10s-of-ktonne scale, will utilize differences in both the scintillation and Cherenkov light emission for different particle species to perform…

High Energy Physics - Experiment · Physics 2023-12-04 E. J. Callaghan , T. Kaptanoglu , M. Smiley , M. Yeh , G. D. Orebi Gann

Liquid-scintillator-based detectors are a robust technology that scales well to large volumes. For this reason, they are attractive for experiments searching for neutrinoless double-beta decay. A combination of improved photo-detection…

Instrumentation and Detectors · Physics 2013-07-12 Lindley Winslow

We discuss here new, enabling technologies for future photon-based neutrino detectors. These technologies touch nearly every aspect of such detectors: new scintillating materials, new methods of loading isotopes, new photon sensors and…

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

The large-volume liquid-scintillator detector LENA (Low Energy Neutrino Astronomy) has been proposed as a next-generation experiment for low-energy neutrinos. High-precision spectroscopy of solar, Supernova and geo-neutrinos provides a new…

A large-scale neutrino observatory based on Water-based Liquid Scintillator (WbLS) will be excellently suited for a measurement of the Diffuse Supernova Neutrino Background (DSNB). The WbLS technique offers high signal efficiency and…

Instrumentation and Detectors · Physics 2021-01-28 Julia Sawatzki , Michael Wurm , Daniel Kresse

The recent development of Water-based Liquid Scintillator (WbLS), and the concurrent development of high-efficiency and high-precision-timing light sensors, has opened up the possibility for a new kind of large-scale detector capable of a…

We present a comprehensive comparison of the physics sensitivities of a Liquid Argon Time Projection Chamber (LArTPC) and a Water-based Liquid Scintillator (WbLS) detector, considering their potential deployment as the fourth far detector…

High Energy Physics - Phenomenology · Physics 2025-07-18 Nishat Fiza , Suhyeon Kim , Emar Masaku , Mehedi Masud , Hokyeong Nam , Juseong Park , Yujin Park , Kim Siyeon

One of the most promising approaches for the next generation of neutrino experiments is the realization of large hybrid Cherenkov/scintillation detectors made possible by recent innovations in photodetection technology and liquid…

Simulation studies have been carried out to explore the ability to discriminate between single-site and multi-site energy depositions in large scale liquid scintillation detectors. A robust approach has been found that is predicted to lead…

Instrumentation and Detectors · Physics 2019-11-26 Jack Dunger , Steven D. Biller

Precision detection of neutrino-nucleus interactions in water with the complete detection of the final state, including leptons and hadrons, is challenging due to water being a non-scintillating medium. This can be a limitation for the…

We propose the liquid-scintillator detector LENA (Low Energy Neutrino Astronomy) as a next-generation neutrino observatory on the scale of 50 kt. The outstanding successes of the Borexino and KamLAND experiments demonstrate the large…

Large liquid scintillation detectors have been generally dedicated to low energy neutrino measurements, in the MeV energy region (as for example, KamLAND and Borexino). Herein we describe the potential employment of large detectors (>1…

High Energy Physics - Experiment · Physics 2009-02-25 John G. Learned

Double beta plus decay is a rare nuclear disintegration process. Difficulties in its measurement arise from suppressed decay probabilities, experimentally challenging decay signatures and low natural abundances of suitable candidate nuclei.…

Future large liquid-scintillator detectors can be implemented to observe neutrinos from a core-collapse supernova (SN) in our galaxy in various reaction channels: (1) The inverse beta decay $\overline{\nu}^{}_e + p \to n + e^+$; (2) The…

High Energy Physics - Phenomenology · Physics 2016-07-27 Jia-Shu Lu , Yu-Feng Li , Shun Zhou

Scintillator detectors can be used in experiments searching for neutrinoless double beta decay. A wide variety of double beta decay candidate isotopes can be made into scintillators or can be loaded into scintillators. Experimental programs…

Instrumentation and Detectors · Physics 2008-12-18 Mark C. Chen

Theia would be a novel, "hybrid" optical neutrino detector, with a rich physics program. This paper is intended to provide a brief overview of the concepts and physics reach of Theia. Full details can be found in the Theia white paper [1].

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