Title :
The effect of bi- and threevalent cation impurities on the luminescence CsI
Author :
Gektin, A.V. ; Krasovitskaya, I.M. ; Shiran, N.V. ; Shlyakhturov, V.V. ; Vinograd, E.L.
Author_Institution :
Inst. for Single Crystals, Acad. of Sci., Kharkov, Ukraine
fDate :
30 Oct-5 Nov 1994
Abstract :
The radiative relaxation of excitons in CsI single crystals is known to be connected with their localization in the neighbourhood of the lattice defects. A typical examples of the realization of an indirect luminescence are CsI(Na) single crystals and deformed CsI crystals. Therefore similar effects may be also caused by polyvalent impurities or their complexes with cation vacancies. The effect of the states of bi- (Ca, Ba) and threevalent (Sb, Bi) impurities on optical and scintillation characteristics of CsI crystals is studied. It is shown that in the crystals doped with mercury-like ions (Sn, Bi) the luminescence at 545 nm (with excitation maximum 263 nm, τ-1.6 and 4.8 μs) connected with the intercentre transitions, and an indirect one at 420 nm (excitation 242 nm, τ-0.9 and 2.7 μs) are observed. The variation of the state (quenching, ageing, impurity concentration, diffusional colouring) changes the correlation between different components of the luminescence: increase the output of the indirect luminescence. Similar effects are also observed in crystals, doped with alkali earth ions (Ca, Ba). The appearance of the luminescence in the blue region of the spectrum with the excitation in the same region 241 nm, (τ-1 μs)
Keywords :
caesium compounds; excitons; impurity states; impurity-vacancy interactions; photoluminescence; radiation quenching; scintillation; 0.9 to 4.8 mus; 241 nm; 420 nm; 545 nm; CsI single crystals; CsI:Ba; CsI:Bi; CsI:Ca; CsI:Sb; ageing; alkali earth ions; bivalent cation impurities; diffusional colouring; excitons; impurity concentration; indirect luminescence; intercentre transitions; luminescence CsI; polyvalent impurities; quenching; radiative relaxation; scintillation characteristics; threevalent cation impurities; Aging; Bismuth; Crystals; Earth; Excitons; Impurities; Lattices; Luminescence; Particle beam optics; Tin;
Conference_Titel :
Nuclear Science Symposium and Medical Imaging Conference, 1994., 1994 IEEE Conference Record
Conference_Location :
Norfolk, VA
Print_ISBN :
0-7803-2544-3
DOI :
10.1109/NSSMIC.1994.474380