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Frequency non-degenerate sequential excitation of the impurity trapped exciton in strontium fluoride crystals doped with ytterbium

机译:掺氟化锶晶体中杂质俘获激子的频率非简并顺序激发

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摘要

We model the dynamic behaviour observed for impurity-trapped excitons in SrF2:Yb2+ using transient photoluminescence enhancement induced via a two-frequency, sequential excitation process employing an UV optical parametric amplifier synchronized to an IR free electron laser (FEL). We observe sharp transitions interpreted as a change of state of the localized hole and broad bands interpreted as a change of state of the delocalized electron. Our modeling indicates that the 4f crystal-field interaction is 25% smaller than in CaF2. The photoluminescence enhancement transients are analyzed across a range of excitation frequencies using a system of rate equations. The temporal behavior is explained in terms of intra-excitonic relaxation, local lattice heating by the FEL, and liberation of electrons from trap states.
机译:我们对瞬态光致发光增强过程进行建模,该动力学行为观察到了SrF2:Yb2 +中杂质捕获的激子的动态行为,该增强过程是通过使用与红外自由电子激光(FEL)同步的UV光参量放大器的两频,顺序激发过程诱导的。我们观察到尖锐的跃迁被解释为局域化空穴的状态变化,而宽谱带则被解释为离域化电子状态的变化。我们的模型表明,4f晶体场相互作用比CaF2小25%。使用速率方程系统,可以分析整个激发频率范围内的光致发光增强瞬变。用内激子弛豫,通过FEL引起的局部晶格加热以及电子从陷阱态的释放来解释时间行为。

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