Impurity and γ-Stimulated Effect of Increasing the Transparency of CaF2 Crystals in the Fundamental Edge Region

IF 0.6 4区 材料科学 Q4 CRYSTALLOGRAPHY
S. E. Sarkisov, V. A. Yusim, Yu. V. Pisarevsky
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引用次数: 0

Abstract

A comparison of absorption spectra revealed activator rare-earth ions at which the effect of impurity and radiation-induced decrease in the optical density at a wavelength of the short-wavelength edge of CaF2 was observed; this effect is explained by the shift of the interband absorption of the crystal to the spectral vacuum UV region. Experiments showed that a multiple increase in the transparency of CaF2 in the wavelength range of 190–200 nm occurs when doping crystals with ions of europium and ytterbium—elements having the lowest chemical potentials in the lanthanide series. This feature determines the ability of Eu3+ and Yb3+ to charge conversion of the oxidation state (+3 → +2). The absorption spectra of these ions were compared with the spectra of Nd3+ and Er3+ ions, which do not exhibit any changes in charge upon γ irradiation of CaF2 crystals and have chemical potentials comparable in magnitude with those of other elements of the series, for which this parameter is 2–5 times larger than for Eu and Yb. The spectral features of the absorption of gadolinium ions were additionally investigated in a simple CaF2 : 2 mol % GdF3 crystal and a solid solution based on CaF2 with addition of 10 mol % GdF3 with the empirical formula Ca0.9Gd0.1F2.1. A peculiarity of Gd is that, in contrast to other rare-earth elements, its ground energy 4f levels in the tri- and divalent states are located, respectively, on the top of the valence band and above the bottom of the conduction band. CaF2 : 0.1 mol % Eu2+ crystals are proposed as an optical medium almost completely transparent in the wavelength range of 190–200 nm. The revealed effect is of interest for designing optical materials for systems of near-Earth and space monitoring for environmental and military purposes, as well as for the production of lenses applied in UV microphotolithography systems.

Abstract Image

杂质和γ激发对提高CaF2晶体基本边缘透明度的影响
通过对稀土离子的吸收光谱比较,发现了杂质和辐射引起的CaF2在短波长边缘的光密度下降的影响;这种效应可以用晶体的带间吸收转移到光谱真空紫外区来解释。实验表明,当掺杂镧系元素中化学势最低的铕和镱离子晶体时,CaF2在190 ~ 200 nm波长范围内的透明度增加了数倍。这一特性决定了Eu3+和Yb3+在氧化态(+3→+2)的电荷转换能力。将这些离子的吸收光谱与Nd3+和Er3+离子的吸收光谱进行了比较,发现Nd3+和Er3+离子在CaF2晶体的γ辐照下没有表现出电荷变化,其化学势的量级与该系列其他元素相当,其化学势参数是Eu和Yb的2-5倍。在简单的CaF2: 2mol % GdF3晶体和加入10mol % GdF3的CaF2固溶体(经验式为Ca0.9Gd0.1F2.1)中研究了钆离子的吸收光谱特征。Gd的一个特点是,与其他稀土元素相比,它在三价态和二价态的地能4f能级分别位于价带的顶部和导带的底部之上。CaF2: 0.1 mol % Eu2+晶体在190 ~ 200nm波长范围内几乎是完全透明的光学介质。所揭示的效应对设计用于环境和军事目的的近地和空间监测系统的光学材料以及用于紫外光微光刻系统的透镜的生产具有重要意义。
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来源期刊
Crystallography Reports
Crystallography Reports 化学-晶体学
CiteScore
1.10
自引率
28.60%
发文量
96
审稿时长
4-8 weeks
期刊介绍: Crystallography Reports is a journal that publishes original articles short communications, and reviews on various aspects of crystallography: diffraction and scattering of X-rays, electrons, and neutrons, determination of crystal structure of inorganic and organic substances, including proteins and other biological substances; UV-VIS and IR spectroscopy; growth, imperfect structure and physical properties of crystals; thin films, liquid crystals, nanomaterials, partially disordered systems, and the methods of studies.
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