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相关论文: Advanced Scintillator Detector Concept (ASDC): A C…

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In this study, the conceptual design and physics simulations of a near-field Water-based Liquid Scintillator (WbLS) detector placed 100 meters from the Akkuyu Nuclear Power Plant (ANPP), currently under construction and aiming at being…

仪器与探测器 · 物理学 2022-09-07 Ayse Bat , Emrah Tiras , Vincent Fischer , Mirac Kamislioglu

Water-based Liquid Scintillator (WbLS) was proposed over a decade ago as a novel detector medium that might allow the separation and tuning of the relative ratio of the Cherenkov and Scintillation signals. A detector deploying this…

Water-based liquid scintillators (WbLS) are attractive neutrino detector materials because they allow us to tune the ratio of the Cherenkov and scintillation signals. Using WbLS large-scale neutrino experiments can benefit from both…

This study investigates the deployment of a medium-scale neutrino detector near Turkey's first nuclear power plant, the Akkuyu Nuclear Power Plant. The aim of this detector is to become a modular testbed for new technologies in the fields…

仪器与探测器 · 物理学 2020-05-20 Vincent Fischer , Emrah Tiras

We have developed a novel tracking detector utilizing a water-based liquid scintillator (WbLS) for the accurate characterization of neutrino interactions on a water target. In this detector, the WbLS is optically segmented into small cells…

仪器与探测器 · 物理学 2025-12-10 Naoto Onda , Yuka Asano , Takashi Iida , Tatsuya Kikawa , Tsuyoshi Nakaya , Atsushi Tokiyasu , Daiki Wakabayashi

The recent development of water-based liquid scintillator 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 very broad…

仪器与探测器 · 物理学 2019-08-14 Gabriel D. Orebi Gann

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…

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…

仪器与探测器 · 物理学 2013-07-12 Lindley Winslow

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…

高能物理 - 唯象学 · 物理学 2025-07-18 Nishat Fiza , Suhyeon Kim , Emar Masaku , Mehedi Masud , Hokyeong Nam , Juseong Park , Yujin Park , Kim Siyeon

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…

仪器与探测器 · 物理学 2021-01-28 Julia Sawatzki , Michael Wurm , Daniel Kresse

Water-based Liquid Scintillator (WbLS) is a novel detector medium for particle physics experiments. Applications range from the use as hybrid Cherenkov/scintillation target in low-energy and accelerator neutrino experiments to large-volume…

The Accelerator Neutrino Neutron Interaction Experiment (ANNIE) is designed to serve as a test bed for new detector technologies in future water and liquid scintillator based neutrino experiments. Located on the Booster Neutrino Beam at…

仪器与探测器 · 物理学 2019-10-22 Emrah Tiras

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…

高能物理 - 实验 · 物理学 2009-02-25 John G. Learned

The detection of scintillation light in noble-liquid detectors is necessary for identifying neutrino interaction candidates from beam, astrophysical, or solar sources. Large monolithic detectors typically have highly efficient light…

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…

ArDM is a new-generation WIMP detector which will measure simultaneously light and charge from scintillation and ionization of liquid argon. Our goal is to construct, characterize and operate a 1 ton liquid argon underground detector. The…

仪器与探测器 · 物理学 2015-05-13 Vittorio Boccone

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 DANSS project is aimed at creating a relatively compact neutrino spectrometer which does not contain any flammable or other dangerous liquids and may therefore be located very close to the core of an industrial power reactor. As a…

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…

仪器与探测器 · 物理学 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
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