首页> 外文期刊>Physical Review, B. Condensed Matter >TIME-RESOLVED FLUORESCENCE-LINE NARROWING AND ENERGY-TRANSFER STUDIES IN A EU3+-DOPED FLUOROPHOSPHATE GLASS
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TIME-RESOLVED FLUORESCENCE-LINE NARROWING AND ENERGY-TRANSFER STUDIES IN A EU3+-DOPED FLUOROPHOSPHATE GLASS

机译:掺有EU3 +的氟磷酸盐玻璃中的时间分辨荧光谱线狭窄和能量转移研究

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The optical properties of Eu3+-doped fluorophosphate glasses of composition (in mol%) 60 NaPO3-15BaF(2)-(25-x)YF3-xEuF(3) (x=0.5, 2, 5, 10, 15, 29, and 25) have been investigated in the 4.2-300 K temperature range by using optical absorption spectroscopy and time-resolved resonant laser-induced fluorescence line narrowing. From the room-temperature absorption spectra Judd-Ofelt parameters have been obtained and used to calculate the spontaneous emission probabilities from the D-5(0) state. The spectral features of the time-resolved fluorescence line-narrowed D-5(0)-->F-7(0,1) emission spectra under resonant excitation at different wavelengths along the F-7(0)-->D-5(0) transition as a function of concentration and temperature reveal the existence of energy migration between discrete regions of the inhomogeneous broadened spectral profile. From the concentration and time dependence of the average rate of excitation transfer, the electronic mechanism ruling the ion-ion interaction can be identified as a dipole-dipole energy transfer process. At low temperatures the average transfer rate parameter slightly depends on wavelength showing a temperature independent behavior. Above 77 K the weak dependence of the transfer rate on excitation wavelength (weak dependence on energy mismatch) together with its T-3 temperature dependence point to a transfer mechanism consistent with a two-site nonresonant two-phonon assisted process. The estimated average crystal field strength grows monotonically with the F-7(0)-->D-5(0) energy suggesting a large variation in the local environment of EU(3+) ions in these glasses. The slight increase with concentration of the D-5(0) fluorescence decays together with their single exponential character suggest that the transfer process may be fast enough to drive the system of excited centers to thermal equilibrium. [References: 38]
机译:组成(摩尔%)60 NaPO3-15BaF(2)-(25-x)YF3-xEuF(3)的Eu3 +掺杂氟磷酸盐玻璃的光学性能(x = 0.5,2,5,5,10,15,29, 25和25)已在4.2-300 K的温度范围内通过光学吸收光谱法和时间分辨共振激光诱导的荧光线变窄进行了研究。从室温吸收光谱中,已获得Judd-Ofelt参数,并将其用于计算D-5(0)状态的自发发射概率。时间分辨荧光线缩窄的D-5(0)-> F-7(0,1)发射光谱在共振激发下沿F-7(0)-> D-的不同波长的光谱特征图5(0)随浓度和温度变化的函数揭示了不均匀加宽光谱分布的离散区域之间存在能量迁移。从平均浓度和时间依赖于激发转移的平均速率,决定离子-离子相互作用的电子机制可以识别为偶极-偶极能量转移过程。在低温下,平均传输速率参数略微取决于显示出温度独立行为的波长。高于77 K时,传输速率对激发波长的依赖性较弱(对能量失配的依赖性较弱)及其T-3温度依赖性指向与两点非共振双声子辅助过程一致的传输机理。估计的平均晶体场强随F-7(0)-> D-5(0)能量单调增长,表明这些玻璃中EU(3+)离子的局部环境存在很大差异。随着D-5(0)荧光浓度的轻微增加以及它们的单指数特征,表明转移过程可能足够快,足以驱动受激中心系统达到热平衡。 [参考:38]

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