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An efficient neutron detection system with good energy resolution is required to correctly characterize decays of neutron-rich nuclei where $\beta-$delayed neutron emission is a dominant decay mode. The Neutron dEtector with Xn Tracking…

Since two decades, laser-driven neutron emissions are studied as they represent a complementary source to conventional neutron sources, with further more different characteristics (i.e. shorter bunch duration and higher number of neutrons…

Conceiving the possibility of using plastic scintillator bars as robust detectors for antineutrino detection for the remote reactor monitoring and nuclear safeguard application we study expected basic performance by Monte Carlo simulation.…

Instrumentation and Detectors · Physics 2016-10-20 A. Sh. Georgadze , V. M. Pavlovych , O. A. Ponkratenko , D. A. Litvinov

The response of a scintillation detector with a cylindrical 1.5-inch LaBr3:Ce crystal to incident neutrons has been measured in the energy range En = 2-12 MeV. Neutrons were produced by proton irradiation of a Li target at Ep = 5-14.6 MeV…

Neutron beam monitors with high efficiency, low gamma sensitivity, high time and space resolution are required in neutron beam experiments to continuously diagnose the delivered beam. In this work, commercially available neutron beam…

Instrumentation and Detectors · Physics 2017-10-04 F. Issa , A. Khaplanov , R. Hall-Wilton , I. Llamas , M. Dalseth Riktor , S. R. Brattheim , H. Perrey

Scintillators capable of detecting both neutrons and gamma-rays have generated considerable interest. In particular, the use of such scintillators with silicon photomultipliers (SiPMs) enables low-power and compact-geometry applications.…

Instrumentation and Detectors · Physics 2018-08-29 Felix Liang , Hartmut Brands , Les Hoy , Jeff Preston , Jason Smith

Two detection systems based on optical readout were developed: a. Integrative optical detector A 2nd generation of Time-Resolved Integrative Optical Neutron (TRION) detector was developed. It is based on an integrative optical technique,…

Instrumentation and Detectors · Physics 2017-05-01 Ilan Mor

We report on the possibility of using Silicon Photomultipliers (SiPMs) to detect the scintillation light from neutron conversion in ZnS:6LiF scintillators. The light is collected by wavelength-shifting fibers embedded into the scintillator.…

Instrumentation and Detectors · Physics 2015-06-18 A. Stoykov , J. -B. Mosset , U. Greuter , M. Hildebrandt , N. Schlumpf

Scintillating fibre detectors combine sub-mm resolution particle tracking, precise measurements of the particle stopping power and sub-ns time resolution. Typically, fibres are read out with silicon photomultipliers (SiPM). Hence, if fibres…

The magnetised near detector (ND280) of the T2K long-baseline neutrino oscillation experiment has been recently upgraded aiming to satisfy the requirement of reducing the systematic uncertainty from measuring the neutrinonucleus interaction…

High Energy Physics - Experiment · Physics 2024-11-01 S. Abe , I. Alekseev , T. Arai , T. Arihara , S. Arimoto , N. Babu , V. Baranov , L. Bartoszek , L. Berns , S. Bhattacharjee , A. Blondel , A. V. Boikov , M. Buizza-Avanzini , J. Capó , J. Cayo , J. Chakrani , P. S. Chong , A. Chvirova , M. Danilov , C. Davis , Yu. I. Davydov , A. Dergacheva , N. Dokania , D. Douqa , T. A. Doyle , O. Drapier , A. Eguchi , J. Elias , D. Fedorova , S. Fedotov , D. Ferlewicz , Y. Fuji , Y. Furui , A. Gendotti , A. Germer , L. Giannessi , C. Giganti , V. Glagolev , J. Hu , K. Iwamoto , M. Jakkapu , C. Jesús-Valls , J. Y. Ji , C. K. Jung , H. Kakuno , S. P. Kasetti , M. Kawaue , M. Khabibullin , A. Khotjantsev , T. Kikawa , H. Kikutani , H. Kobayashi , T. Kobayashi , S. Kodama , M. Kolupanova , A. Korzenev , U. Kose , Y. Kudenko , S. Kuribayashi , T. Kutter , M. Lachat , K. Lachner , D. Last , N. Latham , D. Leon Silverio , B. Li , W. Li , Z. Li , C. Lin , L. S. Lin , S. Lin , T. Lux , K. Mahtani , L. Maret , D. A. Martinez Caicedo , S. Martynenko , T. Matsubara , C. Mauger , C. McGrew , J. McKean , A. Mefodiev , E. Miller , O. Mineev , A. L. Moreno , A. Muñoz , T. Nakadaira , K. Nakagiri , V. Nguyen , L. Nicola , E. Noah , T. Nosek , W. Okinaga , L. Osu , V. Paolone , S. Parsa , R. Pellegrino , M. A. Ramirez , M. Reh , C. Ricco , A. Rubbia , K. Sakashita , N. Sallin , F. Sanchez , T. Schefke , C. M. Schloesser , D. Sgalaberna , A. Shvartsman , N. Skrobova , A. J. Speers , I. A. Suslov , S. Suvorov , D. Svirida , S. Tairafune , H. Tanigawa , A. Teklu , V. V. Tereshchenko , M. Tzanov , I. I. Vasilyev , H. T. Wallace , N. Whitney , K. Wood , Y. -h. Xu , G. Yang , N. Yershov , M. Yokoyama , Y. Yoshimoto , X. Zhao , H. Zheng , T. Zhu , P. Zilberman , E. D. Zimmerman

SBND is the near detector of the Short-Baseline Neutrino program at Fermilab. Its location near to the Booster Neutrino Beam source and relatively large mass will allow the study of neutrino interactions on argon with unprecedented…

Instrumentation and Detectors · Physics 2024-10-15 SBND Collaboration , P. Abratenko , R. Acciarri , C. Adams , L. Aliaga-Soplin , O. Alterkait , R. Alvarez-Garrote , C. Andreopoulos , A. Antonakis , L. Arellano , J. Asaadi , W. Badgett , S. Balasubramanian , V. Basque , A. Beever , B. Behera , E. Belchior , M. Betancourt , A. Bhat , M. Bishai , A. Blake , B. Bogart , J. Bogenschuetz , D. Brailsford , A. Brandt , S. Brickner , A. Bueno , L. Camilleri , D. Caratelli , D. Carber , B. Carlson , M. Carneiro , R. Castillo , F. Cavanna , H. Chen , S. Chung , M. F. Cicala , R. Coackley , J. I. Crespo-Anadón , C. Cuesta , O. Dalager , R. Darby , M. Del Tutto , V. Di Benedetto , Z. Djurcic , K. Duffy , S. Dytman , A. Ereditato , J. J. Evans , A. Ezeribe , C. Fan , A. Filkins , B. Fleming , W. Foreman , D. Franco , I. Furic , A. Furmanski , S. Gao , D. Garcia-Gamez , S. Gardiner , G. Ge , I. Gil-Botella , S. Gollapinni , P. Green , W. C. Griffith , R. Guenette , P. Guzowski , L. Hagaman , A. Hamer , P. Hamilton , M. Hernandez-Morquecho , C. Hilgenberg , B. Howard , Z. Imani , C. James , R. S. Jones , M. Jung , T. Junk , D. Kalra , G. Karagiorgi , K. Kelly , W. Ketchum , M. King , J. Klein , L. Kotsiopoulou , T. Kroupová , V. A. Kudryavtsev , J. Larkin , H. Lay , R. LaZur , J. -Y. Li , K. Lin , B. Littlejohn , W. C. Louis , X. Luo , A. Machado , P. Machado , C. Mariani , F. Marinho , A. Mastbaum , K. Mavrokoridis , N. McConkey , B. McCusker , V. Meddage , D. Mendez , M. Mooney , A. F. Moor , C. A. Moura , S. Mulleriababu , A. Navrer-Agasson , M. Nebot-Guinot , V. C. L. Nguyen , F. Nicolas-Arnaldos , J. Nowak , S. 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 , V. L. Pimentel , J. Plows , F. Psihas , G. Putnam , X. Qian , R. Rajagopalan , P. Ratoff , H. Ray , M. Reggiani-Guzzo , M. Roda , M. Ross-Lonergan , 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 , M. Soares-Nunes , M. Soderberg , S. Söldner-Rembold , J. Spitz , N. J. C. Spooner , M. Stancari , G. V. Stenico , T. Strauss , A. M. Szelc , 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 , J. Yu , B. Zamorano , J. Zennamo , C. Zhang

Nanoscale fabrication and characterisation techniques critically underpin a vast range of fields, including materials science, nanoelectronics and nanobiotechnology. Focused ion beam (FIB) techniques are particularly appealing due to their…

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…

This paper presents studies on application of convolutional neural network (CNN) to GEANT4 optical simulation data generated with a scintillator detector subdivided into 1 cubic cm, which is designed for the long-baseline neutrino…

Instrumentation and Detectors · Physics 2021-06-22 Tomohisa Ogawa

A new type of cold/ultracold neutron detector that can realize a spatial resolution of less than 100 nm was developed using nuclear emulsion. The detector consists of a fine-grained nuclear emulsion coating and a 50-nm thick $^{10}$B$_4$C…

Instrumentation and Detectors · Physics 2018-12-05 N. Naganawa , T. Ariga , S. Awano , M. Hino , K. Hirota , H. Kawahara , M. Kitaguchi , K. Mishima , H. M. Shimizu , S. Tada , S. Tasaki , A. Umemoto

Neutron imaging is one of the most powerful tools for nondestructive inspection owing to the unique characteristics of neutron beams, such as high permeability for many heavy metals, high sensitivity for certain light elements, and isotope…

With the development of laser technologies, nuclear reactions can happen in high-temperature plasma environments induced by lasers and have attracted a lot of attention from different physical disciplines. However, studies on nuclear…

Instrumentation and Detectors · Physics 2021-06-18 Po Hu , Zhiguo Ma , Kai Zhao , Guoqiang Zhang , Deqing Fang , Baoren Wei , Changbo Fu , Yugang Ma

Fast timing detectors are an essential element in the experimental setup for time-of-flight (ToF) mass measurements of unstable nuclei. We have upgraded the scintillator detectors used in experiments at the National Superconducting…

The use of additive manufacturing (AM) processes for industrial fabrication has grown rapidly over the last ten years. The most well-known AM technologies are fused deposition modelling and stereolithography techniques. One particular…

This letter explains a new, highly sensitive method for the detection of neutrons, which uses the T$_{1/2}=845$ ns delay in the decay of $^{128}$I at the 137.8 keV energy level, resulting from the capture of thermal neutrons by iodine…

Instrumentation and Detectors · Physics 2017-03-08 E. Yakushev , S. Rozov , A. Drokhlyansky , D. Filosofov , Z. Kalaninova , V. Timkin , D. Ponomarev