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First-principles calculations of structural and electronic properties of pure and Tm~(2+)-doped SrCl~2

机译:纯和掺杂Tm〜(2+)的SrCl〜2的结构和电子性质的第一性原理计算

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The structural and electronic properties of pure and Tm~(2+)doped SrCl_2 have been studied in details using the hybrid density-functional theory, as implemented in CRYSTAL09 code. The calculated local geometry structures of the doped site, electronic band structures, density of states, and Mulliken populations for the pure and doped crystals are analyzed and compared to reveal the changes induced by the impurity ion. Additionally, based on the optimized local structure, the 4f~(13) and 4f~(12)5d energy levels ofTm~(2+) ions in SrCl_2 are calculated by employing the exchange charge model of the semi-empirical crystal-field theory. The simulated 4f–5d transition optical spectrum ofTm~(2+) ions in SrCl_2 shows good agreement with the corresponding experimental result.
机译:利用CRYSTAL09代码实现的混合密度泛函理论,对纯的和Tm〜(2+)掺杂的SrCl_2的结构和电子性质进行了详细研究。计算并比较了纯净晶体和掺杂晶体的掺杂位点的局部几何结构,电子能带结构,态密度和Mulliken种群,并进行了比较,以揭示由杂质离子引起的变化。另外,基于优化的局部结构,利用半经验晶体场理论的交换电荷模型计算了SrCl_2中Tm〜(2+)离子的4f〜(13)和4f〜(12)5d能级。 。在SrCl_2中模拟的Tm〜(2+)离子的4f-5d跃迁光谱与相应的实验结果吻合良好。

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