A Device for Thermal Treatment of Luminescence Ionizing-Radiation Detectors Intended for Radiation Nondestructive Testing

Author:

Moiseykin E. V.,Nikiforov S. V.,Ust’yantsev Yu. G.,Khokhlov K. O.,Polyakova K. A.

Publisher

Pleiades Publishing Ltd

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference14 articles.

1. Normy radiatsionnoi bezopasnosti NRB-99/2009. Sanitarnye normy i pravila SanPiN 2.6.1.2523-09 (Radiation Safety Standards NRB-99/2009. Sanitary Rules and Regulations SanPiN 2.6.1.2523-09), Moscow: RF Ministry of Health, 2009. Enacted July 7, 2009.

2. Yukihara, E. and McKeever, S.W.S., Optically Stimulated Luminescence. Fundamentals and Application, Wiley, 2011.

3. Nikiforov, S.V. and Kortov, V.S., Radiatsionno-indutsirovannye protsessy v shirokozonnykh nestekhiometricheskikh oksidnykh dielektrikakh (Radiation-Induced Processes in Wide-Gap Nonstoichiometric Oxide Dielectrics), Moscow: Tekhnosfera, 2017.

4. Aksel’rod, M.S., Kortov, V.S., Mil’man, I.I., Gorelova, Ye.A., Borisov, A.A., Zatulovskii, L.M., Kravetskii, D.Ya., Berezina, I.E., and Lebedev N.K., Profiled carbon-doped aluminum-oxide single crystals for thermoluminescence dosimetric detectors, Izv. Akad. Nauk SSSR, Ser. Fiz., 1988, vol. 52, no. 10, pp. 1981–1984.

5. Kortov, V.S., Mil’man, I.I., and Nikiforov, S.V., The effect of deep traps on the main features of thermoluminescence in dosimetric a-Al2O3 crystals, Radiat. Prot. Dosim., 1999, vol. 84, nos. 1–4, pp. 35–38.

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