Prototype of a Two-Coordinate Position-Sensitive Detector Based on a 6LiF/ZnS(Ag) Scintillator
- Авторлар: Podlesnyy M.M.1,2, Milkov V.M.1, Bogdzel A.A.1, Bodnarchuk V.I.1, Hassan A.A.1,3
-
Мекемелер:
- Joint Institute for Nuclear Research
- Moscow Institute of Physics and Technology (National Research University)
- National Research Nuclear University (Moscow Engineering Physics Institute MEPhI)
- Шығарылым: № 4 (2023)
- Беттер: 67-70
- Бөлім: Articles
- URL: https://freezetech.ru/1028-0960/article/view/664580
- DOI: https://doi.org/10.31857/S1028096023040167
- EDN: https://elibrary.ru/JNIBPB
- ID: 664580
Дәйексөз келтіру
Аннотация
A prototype of a two-coordinate position-sensitive detector based on a small-area 6LiF/ZnS(Ag) scintillator, fabricated using square-section spectrum-shifting optical fibers, is presented. The size of the square active area of the detecting surface (96 × 96 cm) corresponds to 16 channels along the X axis and 16 channels along the Y axis. The obtained neutron detection efficiency is 8%.
Авторлар туралы
M. Podlesnyy
Joint Institute for Nuclear Research; Moscow Institute of Physics and Technology (National Research University)
Хат алмасуға жауапты Автор.
Email: podlesny@phystech.edu
Russia, 141980, Dubna; Russia, 115184, Dolgoprudny
V. Milkov
Joint Institute for Nuclear Research
Email: podlesny@phystech.edu
Russia, 141980, Dubna
A. Bogdzel
Joint Institute for Nuclear Research
Email: podlesny@phystech.edu
Russia, 141980, Dubna
V. Bodnarchuk
Joint Institute for Nuclear Research
Email: podlesny@phystech.edu
Russia, 141980, Dubna
A. Hassan
Joint Institute for Nuclear Research; National Research Nuclear University (Moscow Engineering Physics Institute MEPhI)
Email: podlesny@phystech.edu
Russia, 141980, Dubna; Russia, 115409, Moscow
Әдебиет тізімі
- Бокучава Г.Д., Балагуров А.М., Сумин В.В., Папушкин И.В. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2010. № 11. С. 9.
- Kuzmin E.S., Balagurov A.M., Bokuchava G.D., Zhuk V.V., Kudryashev V.A., Bulkin A.P., Trounov V.A. // J. Neutron Res. 2002. V. 10. № 1. P. 31. https://doi.org/10.1080/10238160290027748
- Balagurov D.A., Balagurov A.M., Bobrikov I.A., Bogzdel A.A. // Nucl. Instrum. Methods Phys. Res. B. 2018. V. 436. P. 263.https://doi.org/10.1016/j.nimb.2018.09.045
- Kruglov V.V., Balagurov A.M., Belova M.O., Bobrikov I.A., Bogdzel A.A., Bodnarchuk V.I., Bulavina V.V., Daulbaev O., Drozdov V.A., Zhuravlev V.V., Kirilov A.S., Kulikov S.A., Kurilkin A.K., Milkov V.M., Murashkevich S.M., Podlesnyy M.M., Prikhodko V.I., Churakov A.V., Shvetsov V.V. // J. Neutron Res. 2021. V. 23. № 4. P. 243. https://doi.org/10.3233/JNR-210001
- IBR-2 pulsed reactor. http://flnph.jinr.ru/en/facilities/ibr-2
- Kuzmin E.S., Balagurov A.M., Bokuchava G.D., Zhuk V.V., Kudryashev V.A., Bulkin A.P., Trounov V.A. // J. Neutron Res. 2002. V. 10. № 1. P. 31. https://doi.org/10.1080/10238160290027748
- Organic Scintillation Materials and Assemblies. https://www.crystals.saint-gobain.com/radiation-detection-scintillators/fibers
- Henkel Loctite Stycast 1266 Epoxy. https://www.ellsworth.com/products/by-manufacturer/henkel-loctite/encapsulants/epoxy
- Hamamatsu Multianode Photomultiplier Tube Assembly. https://www.hamamatsu.com/jp/en/product/optical-sensors/pmt/pmt-assembly/metal-package-type/ H8711-100.html
- Philips Scientific 16 Channel Variable Gain Amplifier. https://hallcweb.jlab.org/hchkswiki/images/PS778.pdf
- CAEN 8 Channel 14-bit 500 MS/s Digitizer. https://www.caen.it/products/n6730/
- Sakai K., Hirota K., Adachi T., Ikeda K., Morishima T., Shimizu H.M., Furusaka M., Sato S., Kiyanagi Y., Sakamoto N., Sakuma T., Oku T., Suzuki J., Littrell K., Loong C.-K., Czirr J.B., McKnight T.K. // Nucl. Instrum. Methods Phys. Res. A. 2004. V. 529. № 1–3. P. 301. https://doi.org/101016/jnima200404170
- Katagiri M., Nakamura T., Ebine M., Birumachi A., Sato S., Shooneveld E.M., Rhodes N.J. // Nucl. Instrum. Methods Phys. Res. A. 2007. V. 573. № 1–2. P. 149. https://doi.org/10.1016/j.nima.2006.11.011
