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Ab initio, crystal field and experimental spectroscopic studies of pure and Ni~(2+)-doped KZnF_3 crystals

机译:纯和Ni〜(2+)掺杂的KZnF_3晶体的从头算,晶体场和实验光谱研究

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摘要

Pure and Ni~(2+) doped KZnF_3 single crystals were studied using the combination of the DFT-based ab initio methods, crystal field theory and experimental spectroscopic techniques. The electronic, optical and elastic properties have been calculated and compared with available experimental data and good agreement was achieved. Elastic anisotropy of pure KZnF_3 was modeled; calculations of the sound velocity, Debye temperature, Griineisen parameter and specific heat capacity were performed. Comparison of the calculated results for the pure and doped material, which is reported for the first time for the considered material, enabled to identify the changes in the optical and electronic properties, which are due to the introduced nickel impurity ions. In particular, it was shown that the lowest Ni 3d states appear in the host's band gap at about 1.0 eV above the valence band. The changes of the electron density distribution after doping were also shown. Microscopic analysis of the crystal field effects based on the performed ab initio calculations of the Ni~(2+) density of states at different external pressures enabled to estimate the constants of the electron-vibrational interaction, Huang-Rhys factor, Stokes shift and local bulk modulus around impurity ions. The crystal field calculations of the Ni~(2+) energy levels were performed to analyze and assign the experimental absorption spectrum. Such a combination of the ab initio and semi-empirical calculating techniques leads to a complementary picture of the physical properties of KZnF_3:Ni~(2+) and can be applied to other doped crystals.
机译:利用基于DFT的从头算方法,晶体场理论和实验光谱技术相结合,研究了纯和Ni〜(2+)掺杂的KZnF_3单晶。计算了电子,光学和弹性性能,并将其与可用的实验数据进行比较,并取得了良好的一致性。对纯KZnF_3的弹性各向异性进行建模;进行了声速,德拜温度,Griineisen参数和比热容的计算。对于纯净材料和掺杂材料的计算结果进行比较,这是首次针对所考虑的材料进行报告,从而能够确定由于引入的镍杂质离子而引起的光学和电子性能变化。特别地,表明最低的Ni 3d状态出现在主体的带隙中,比价带高约1.0 eV。还显示了掺杂后电子密度分布的变化。基于在不同外部压力下对态的Ni〜(2+)态进行的从头算的晶体场效应的微观分析,可以估算电子-振动相互作用,Huang-Rhys因子,斯托克斯位移和局域常数杂质离子周围的体积模量。进行了Ni〜(2+)能级的晶体场计算,以分析和确定实验吸收光谱。从头算和半经验计算技术的这种组合产生了KZnF_3:Ni〜(2+)物理性质的互补图,并且可以应用于其他掺杂晶体。

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