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Luminescence and decay behaviors of Tb-doped yttrium silicate

机译:Tb掺杂硅酸钇的发光和衰变行为

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摘要

The photoluminescence of terbium-activated yttrium silicate with the general formula Y_(2-x)Tb_xSiO_5 was investigated as a function of Tb~(3+) concentration. Especially, the main attention was focused on the ~5D_3 fluorescence and its energy transfer behavior. The emission and excitation spectra were measured in terms of Tb~(3+) concentration. The diffuse reflectance spectrum was also measured in the range from VUV to UV. As a result, yttrium silicate was found to have a broad absorption band extended from the VUV to UV range. The concentration quenching was investigated in terms of luminance and decay time both for ~5D_3 and ~5D_4 fluorescence. The energy transfer was also investigated by analyzing the decay curve of ~5D_3 emission, for which well-known cross-relaxation has been accepted as a main factor, were analyzed by Inokuti and Hirayama's formula on the basis of the direct quenching scheme. Furthermore, the rate equations including a newly proposed quenching scheme were taken into consideration. The rate equations accept the emission quenching as due to the cross-relaxation from ~5D_(3 or 4) to some upper levels such as ~7D and the charge-transfer band.
机译:研究了通式为Y_(2-x)Tb_xSiO_5的铽活化硅酸钇的光致发光随Tb~(3+)浓度的变化.特别是,主要关注的是~5D_3荧光及其能量转移行为。发射和激发光谱以Tb~(3+)浓度测量。漫反射光谱也在从VUV到UV的范围内测量。结果发现硅酸钇具有从VUV到UV范围的宽吸收带。研究了~5D_3和~5D_4荧光的浓度猝灭和衰减时间。此外,还通过分析~5D_3发射的衰变曲线来研究能量转移,其中众所周知的交叉弛豫已被接受为主要因素,并基于直接淬灭方案,采用Inokuti和Hirayama公式进行了分析。此外,还考虑了包括新提出的淬火方案在内的速率方程。速率方程接受发射淬灭是由于从~5D_(3或4)到某些上能级(如~7D和电荷转移带)的交叉弛豫。

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