Physical origin of coloration and radiation hardness of lead tungstate scintillation crystals

被引:13
|
作者
Burachas, S.
Saveliev, Yu.
Ippolitov, M.
Manko, V.
Lomonosov, V.
Vasillev, A.
Apanasenko, A.
Vasiliev, A.
Uzunian, A.
Tamulaitis, G. [1 ]
机构
[1] Vilnius State Univ, Semicond Phys Dept, Vilnius, Lithuania
[2] Vilnius State Univ, IMSAR, Vilnius, Lithuania
[3] Inst High Energy Phys, Protvino, Russia
[4] Kharkov AM Gorkii State Univ, UA-310077 Kharkov, Ukraine
[5] RRC Kurchatov Inst, Moscow, Russia
[6] N Crystals Co, Apatity, Murmansk, Russia
关键词
radiation; Czochralski method; tungstates; scintillator materials; scintillators;
D O I
10.1016/j.jcrysgro.2006.05.004
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
The prevailing role of defect clusters, WO3-x, of variable composition in the coloration of scintillation crystals PbWO4 (PWO) and mechanisms underlying this process are revealed. Comparative studies of the influence of irradiation and reductive annealing on the optical properties of the material show that both treatments cause variation of tungsten valency in the WO3-x clusters that results in a variation of the optical absorption spectrum and, consequently, in the color of the entire PWO crystal. Irradiation causes reversible redistribution of electrons inside the cluster, while the reductive annealing initiates migration of oxygen atoms out of the crystal which makes the coloration unrecoverable. The negative influence of intentionally introduced variable-valency element (niobium) on the radiation hardness as well as possibilities for improvement of the radiation hardness by growth optimization based on the model proposed are demonstrated. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:62 / 67
页数:6
相关论文
共 50 条
  • [1] Temperature dependence of radiation hardness of lead tungstate (PWO) scintillation crystals
    Burachas, S.
    Ippolitov, M.
    Manko, V.
    Nikulin, S.
    Vasiliev, A.
    Apanasenko, A.
    Vasiliev, A.
    Uzunian, A.
    Tamulaitis, G.
    RADIATION MEASUREMENTS, 2010, 45 (01) : 83 - 88
  • [2] A study on the radiation hardness of lead tungstate crystals
    Zhu, RY
    Deng, Q
    Newman, H
    Woody, CL
    Kierstead, JA
    Stoll, SP
    1997 IEEE NUCLEAR SCIENCE SYMPOSIUM - CONFERENCE RECORD, VOLS 1 & 2, 1998, : 263 - 270
  • [3] A study on the radiation hardness of lead tungstate crystals
    Zhu, RY
    Deng, Q
    Newman, H
    Woody, CL
    Kierstead, JA
    Stoll, SP
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1998, 45 (03) : 686 - 691
  • [4] Testing the radiation hardness of lead tungstate scintilating crystals
    Shao, Ming
    Chen, Hongfang
    Li, Cheng
    Chen, Hui
    Xu, Zizong
    Wang, Zhaomin
    Kao Neng Wu Li Yu Ho Wu Li/High Energy Physics and Nuclear Physics, 2000, 24 (06): : 554 - 559
  • [5] Testing the radiation hardness of lead tungstate scintilating crystals
    Shao, M
    Chen, HF
    Li, C
    Chen, H
    Xu, ZZ
    Wang, ZM
    HIGH ENERGY PHYSICS AND NUCLEAR PHYSICS-CHINESE EDITION, 2000, 24 (06): : 554 - 559
  • [6] Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals
    Burachas, S
    Beloglovski, S
    Makov, I
    Saveliev, Y
    Ippolitov, M
    Manko, V
    Nikulin, S
    Nyanin, A
    Vassiliev, A
    Apanasenko, A
    Tamulaitis, G
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2003, 505 (03): : 656 - 662
  • [7] First study of radiation hardness of lead tungstate crystals at low temperatures
    Semenov, P. A.
    Uzunian, A. V.
    Davidenko, A. M.
    Derevschikov, A. A.
    Goncharenko, Y. M.
    Kachanov, V. A.
    Khodyrev, V. Y.
    Meschanin, A. P.
    Minaev, N. G.
    Mochalov, V. V.
    Melnick, Y. M.
    Ryazantsev, A. V.
    Vasiliev, A. N.
    Burachas, S. F.
    Ippolitov, M. S.
    Manko, V.
    Vasiliev, A. A.
    Mochalov, A. V.
    Novotny, R.
    Tamulaitis, G.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2007, 582 (02): : 575 - 580
  • [8] Temperature dependence of radiation resistance of scintillation detectors based on lead tungstate crystals
    Burachas, S. F.
    Ippolitov, M. S.
    Manko, V., I
    Nikulin, S. A.
    Vasiliev, A. N.
    Apanasertko, A. L.
    Vasilieva, A. N.
    Uzunian, A., V
    Tamulaitis, G.
    FUNCTIONAL MATERIALS, 2009, 16 (01): : 76 - 81
  • [9] Control of lead tungstate crystals radiation hardness through optical transmission measurements
    Annenkov, AN
    Auffray, E
    Chipaux, R
    Drobychev, GY
    Fedorov, AA
    Geleoc, M
    Golubev, NA
    Korzhik, MV
    Lecoq, P
    Lednev, AA
    Ligun, AB
    Missevich, OV
    Pavlenko, VB
    Peigneux, JP
    Singovski, AV
    PROCEEDINGS OF THE SEVENTH INTERNATIONAL CONFERENCE ON CALORIMETRY IN HIGH ENERGY PHYSICS, 1998, : 484 - 491
  • [10] Studying the radiation hardness of lead tungstate crystals under long-term γ irradiation
    Vasiliev, A. N.
    Goncharenko, Yu M.
    Davidenko, A. M.
    Derevschikov, A. A.
    Kachanov, V. A.
    Melnick, Yu M.
    Meschanin, A. P.
    Minaev, N. G.
    Morozov, D. A.
    Mochalov, V. V.
    Ryzhikov, S. V.
    Ryazantsev, A. V.
    Semenov, P. A.
    Uzunian, A. V.
    Yakutin, A. E.
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 2013, 56 (03) : 271 - 275