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Radiative properties of neutral germanium obtained from excited-state lifetime and branching-ratio measurements and comparison with theoretical calculations

机译:从激发态寿命和分支比测量获得的中性锗的辐射特性,并与理论计算进行比较

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摘要

Using time-resolved UV laser-induced fluorescence from a laser-produced plasma, natural radiative lifetimes have been measured for 21 levels of Ge I belonging to the odd-parity 4p4d, 4p5d, and 4p6s configurations. Stimulated Brillouin scattering in water has allowed us to compress Nd:YAG laser pulses pumping a dye laser (where YAG denotes yttrium aluminum garnet), thus yielding 1-ns tunable laser pulses to enable accurate measurements of short lifetimes. Branching ratios of Ge I have been measured by inductively coupled plasma emission spectrometry, the intensity calibration being performed by means of Ar lines emitted by a hollow-cathode lamp. The experimental lifetimes and branching ratios have been combined in order to provide a set of accurate transition probabilities for the 4p-5s and 4p-4d transitions. A relativistic Hartree-Fock; calculation, taking configuration-interaction and polarization effects into account, has been combined with a least-squares optimization procedure of the Slater and spin-orbit integrals in order to test the ability of this approach to correctly predict radiative properties of the group-IV elements. Good agreement between experimental and theoretical transition probability values has been achieved for most of the transitions considered.
机译:使用来自激光产生的等离子体的时间分辨的UV激光诱导的荧光,已测量了21种Ge I的自然辐射寿命,这些Ge I属于奇偶性4p4d,4p5d和4p6s配置。刺激的布里渊在水中的散射使我们能够压缩泵浦染料激光器的Nd:YAG激光脉冲(其中YAG表示钇铝石榴石),从而产生1-ns可调激光脉冲,从而能够精确测量短寿命。 Ge I的支化比已通过电感耦合等离子体发射光谱法测量,强度校准通过空心阴极灯发射的Ar线进行。实验寿命和支化比率已合并在一起,以便为4p-5s和4p-4d过渡提供一组准确的过渡概率。相对论的哈特里-福克;计算,考虑了构型相互作用和极化效应,已与Slater和自旋轨道积分的最小二乘优化程序相结合,以测试此方法正确预测IV组元素的辐射特性的能力。对于大多数考虑的转换,实验和理论转换概率值之间已经取得了很好的一致性。

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