Title :
Energy Levels of
in
Author :
Wu, Yuntao ; Ren, Guohao ; Ding, Dongzhou ; Yang, Fan ; Pan, Shangke
Author_Institution :
Shanghai Inst. of Ceramics, Shanghai, China
Abstract :
Cerium doped lutetium scandium orthoborate Ce3+:Lu0.8Sc0.2BO3 is a novel and promising inorganic scintillator. For the sake of better understanding its scintillation mechanism, several approaches were undertaken to locate the Ce3+ energy levels relative to the host. To estimate the energy position of Ce3+4f levels with respect to the valence band, X-ray photoelectron spectroscopy (XPS) was used. Furthermore, the photoluminescence decays as a function of temperature, a widely used technique, was utilized to find the relative positions of Ce3+5d levels to the conduction band. Finally, the Ce3+ energy levels in Lu0.8Sc0.2BO3 host was constructed, meanwhile, the effectiveness of the XPS technique to estimate the energy position of Ce3+ 4f levels relative to the conduction band was evaluated.
Keywords :
X-ray photoelectron spectra; cerium; conduction bands; doping; lutetium compounds; photoluminescence; scandium compounds; scintillation; valence bands; Lu0.8Sc0.2BO3:Ce; X-ray photoelectron spectroscopy; XPS technique; cerium doped lutetium scandium orthoborate; conduction band; energy levels; inorganic scintillators; optical method; photoluminescence; scintillation mechanism; temperature function; valence band; Cerium; Crystals; Energy states; Ionization; Spectroscopy; Stationary state; Temperature measurement; ${hbox {Lu}}_{0.8}{hbox {Sc}}_{0.2}{hbox {BO}}_{3}{hbox {:Ce}}$; Energy levels; XPS; scintillator; thermal ionization;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2012.2186153