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Performance of a plastic scintillator developed using styrene monomer polymerization

Azer SadigovF. AhmadovG. AhmadovErhan AksuTürkiye Energy , Nuclear and Mineral Research Agency , Nuclear Energy Research Institution , Saray , Atom Cd. 27 , Ankara , 06980 , TürkiyeD. BerikovInstitute of Nuclear Physics of theSabuhi NuruyevInstitute of Radiation Problems under Ministry of Science and Education , B.Vahabzade str. 9 , Baku , AZ1143 , AzerbaijanR. AkbarovM. HolíkFaculty of Electrical Engineering , UWB in Pilsen , Univerzitni 2795/26 , Pilsen , 306 14 , Czech RepublicJ. NagiyevGuner, S. GurbuzTürkiye Energy , Nuclear and Mineral Research Agency , Nuclear Energy Research Institution , Saray , Atom Cd. 27 , Ankara , 06980 , TürkiyeA. MammadliN. M. SuleymanovaC. AbbasovaMelikova, S.Ercan YılmazDepartment of Physics , Bolu Abant Izzet Baysal University , Gölköy Kampüsü , Bolu , 14280 , TürkiyeO.B. TagiyevInstitute of Physics -Ministry of Science and Education , G.Javid ave. 131 , Baku , AZ1143 , AzerbaijanSergiy LyubchykMinistry of Energy of theZ. Sadygov
2023en
ABI

Annotatsiya

This paper presents a newly developed plastic scintillator produced in collaboration with Turkiye Energy, Nuclear and Mineral Research Agency (TENMAK). The scintillator is manufactured using thermal polymerization of commercially available styrene monomer. The absorption spectrum of the scintillator exhibited two absorption bands at 225 nm and 340 nm, with an absorption edge observed at 410 nm. The wavelength of the emitted light was measured in the range of 400-800 nm, with a maximum intensity at 427 nm. Monoenergetic electrons from the 137Cs source were used to evaluate the characteristics of the new scintillator, particularly its light yield. As the light readout the MAPD-3NM type silicon photomultiplier array (4 x 4) with an active area of 15 x 15 mm2, assembled using single MAPDs with an active area of 3.7 x 3.7 mm2, was used. The light yield of the scintillator was determined to be 6134 photons/MeV. In addition, the efficiency of the scintillator for gamma rays with an energy of 662 keV was found to be approximately 1.8 %. A CmBe neutron source was employed to evaluate its fast neutron detection performance. However, neutron/gamma discrimination using pulse shape discrimination (charge integration) method was not observed. The results demonstrate the potential of a newly produced plastic scintillator for various applications, particularly in radiation monitoring and detection systems.

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