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1. 中国科学院, 上海硅酸盐研究所, 上海, 200050
2. 苏州大学, 材料工程学院,江苏 苏州,215021
3. 南京大学, 地球科学系,江苏 南京,210093
收稿日期:2006-03-03,
修回日期:2006-09-04,
纸质出版日期:2006-11-20
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黄彦林, 赵连泽, 谢建军. Nd<sup>3+</sup>掺杂PbWO<sub>4</sub>晶体的光谱特征和浓度效应[J]. 发光学报, 2006,27(6): 891-896
HUANG Yan-lin, ZHAO Lian-ze, XIE Jian-jun. Luminescence Spectra and Doping Effects in Nd<sup>3+</sup>-doped PbWO<sub>4</sub> Single Crystals[J]. Chinese Journal of Luminescence, 2006,27(6): 891-896
钨酸铅晶体(PbWO
4
)是新型的闪烁晶体
针对其广阔的光电子应用
实验测试了Nd
3+
掺杂PbWO
4
晶体的吸收光谱
讨论了不同的Nd
3+
掺杂浓度对于吸收系数和PbWO
4
光学吸收边的影响。依据Judd-Ofelt理论计算了吸收截面积、强度参数、量子荧光效率、荧光分支比等。讨论了不同浓度Nd
3+
掺杂的PbWO
4
晶体的光致发光光谱;室温LD 808nm泵浦下
1.06μm荧光发射的荧光强度、荧光寿命和发射截面积
论述了这些性能随Nd
3+
掺杂浓度的变化关系。
Four kinds of Nd
3+
doped PbWO
4
single crystals with different doping concentrations were grown by a vertical Bridgman method and Czochralski method. The purpose of this research is to investigate the influence of Nd
3+
doping concentration on the band gap structures and the luminescence properties on the base of optical absorption edge and luminescence of PbWO
4
single crystals
respectively. The optical absorption spectra of PWO:Nd
3+
crystals were measured at first. The dependence of absorption coefficient and the optical absorption edges on the doping levels of Nd
3+
ion were investigated. Compared to that of pure PbWO
4
the optical absorption edges in Nd
3+
doped samples at lower concentration 0.15% show the shift to high energy region (short wavelength). With increasing of Nd
3+
doping
the optical absorption edge greatly shifts to the low energy region (long wavelength). Based on the J-O theory
the phenomenological intensity parameters
intermanifold luminescence branching ratios
irradiative lifetime of the
4
F
3/2
level
the absorption and emission cross section of the PbWO
4
:Nd
3+
crystals were calculated. Photoluminescence of PbWO
4
:Nd
3+
crystals were discussed. In PbWO
4
:Nd
3+
luminescence from PbWO
4
host
especially the exciton excitation
are supressed with increasing of Nd
3+
doping concentration; and in Nd
3+
heavily doped PbWO
4
new excitation bands related to the oxygen vacancy were created. Fluorescence intensity and lifetime of
4
F
3/2
→
4
I
11/2
excited by laser diode (LD) and its lifetime at room temperature show a dependence of Nd
3+
concentration. Under excitation by 808 nm laser diode
PbWO
4
:Nd
3+
2.0% show an efficient 1.06 μm emission (950~1100 nm).
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