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Analysis of vacuum ultraviolet electronic spectra of Ce~(3+) and Pr~(3+) ions in Ca_9Lu(PO_4)_7: Crystal-field calculations and simulation of optical spectra

机译:Ca_9Lu(PO_4)_7中Ce〜(3+)和Pr〜(3+)离子的真空紫外电子光谱分析:晶体场计算和光谱模拟

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The 4f-5d excitation and emission spectra of Ce~(3+) and Pr ~(3+) ions in Ca_9Lu(PO_4)_7 as recently reported (2012 J. Phys.: Condens. Matter 24 385502) were further analyzed and simulated by employing the effective Hamiltonian model for the 4f~N and 4f~(N-1)5d electronic configurations of impurity lanthanide ions and the exchange charge model of crystal-field theory. The multi-site effect on the 4f-5d transition spectra was explicitly discussed from the points of view of the local structure and site occupation ratios of lanthanide ions in Ca _9Lu(PO_4)_7. An excellent agreement between the predicted and measured spectra confirms the validity of the performed calculations. Based on these energy level and intensity calculation results, the radiative lifetimes of the 5d-4f emissions of Ce~(3+) and Pr ~(3+) ions have been modeled to show nearly independent temperature trends. Comparison with the measured lifetimes suggests the nonradiative relaxation process in this host is probably related to the intrinsic defect states. In addition to the studies of the 4f-5d transitions, a general theoretical scheme to calculate the lowest 4f-6s transition energy of the Ce~(3+) ion was proposed for the first time on the basis of the ligand polarization model. The predicted 6s energy position of the Ce~(3+) ion in Ca_9Lu(PO_4)_7 is solid evidence corroborating our previous spectroscopic assignment.
机译:最近对Ca_9Lu(PO_4)_7中的Ce〜(3+)和Pr〜(3+)离子的4f-5d激发和发射光谱进行了进一步分析和模拟(2012 J. Phys .: Condens。Matter 24 385502)通过对杂质镧系离子的4f〜N和4f〜(N-1)5d电子构型采用有效的哈密顿量模型以及晶体场理论的交换电荷模型。从Ca_9Lu(PO_4)_7中镧系离子的局部结构和位点占有率的角度,明确讨论了对4f-5d跃迁谱的多位点效应。预测光谱和测量光谱之间的极好的一致性证实了所进行计算的有效性。基于这些能级和强度计算结果,对Ce〜(3+)和Pr〜(3+)离子5d-4f发射的辐射寿命进行了建模,以显示几乎独立的温度趋势。与测得的寿命进行比较表明,该主体中的非辐射弛豫过程可能与固有缺陷状态有关。除了对4f-5d跃迁的研究以外,首次基于配体极化模型,提出了计算Ce〜(3+)离子最低4f-6s跃迁能的一般理论方案。 Ca_9Lu(PO_4)_7中Ce〜(3+)离子的预测6s能量位置是有力的证据,证实了我们先前的光谱分配。

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