Determination of the Concentration of Tm3+ and Ho3+ Ions in the Glass and Crystalline Phases in Oxyfluoride Glass Ceramics by Absorption Spectra Analysis

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION Devices and Methods of Measurements Pub Date : 2024-04-12 DOI:10.21122/2220-9506-2024-15-1-50-59
A. Yasukevich, V. Kisel, E. Trusova, G. E. Rachkovskaya, G. B. Zakharevich, K. B. Podbolotov, V. S. Gurin
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Abstract

Optical glass ceramics based on oxyfluoride glasses activated by rare earth ions have attractive properties for development of lasers and near-infrared amplifiers, since they combine properties of fluoride crystals with low phonon frequencies and chemical and mechanical properties of oxide matrices. Spectroscopic properties of activator ions in crystalline and glass phases of glass-ceramics can differ significantly. Thus, it is possible to determine impurity ions’ distribution between these phases by means of absorption or luminescence spectra analysis. The main goal of this work was to develop a method for determining the concentration of Tm3+ and Ho3+ ions in the crystalline, PbF2 and glassy phases of glass ceramics after secondary thermal treatment of thulium-doped and thulium-holmium co-doped oxyfluoride glasses. Spectroscopic characteristics of oxyfluoride glasses activated by Tm3+ ions and co-activated by Tm3+ and Ho3+ ions, as well as glass ceramics obtained from the original glasses as a result of secondary heat treatment were studied. It was established by X-ray phase analysis method that under certain heat treatment conditions crystalline β-PbF2 phase is formed in those glasses. Absorption and luminescence spectra of Tm3+ and Ho3+ impurity ions in the original glass and in β-PbF2 crystals were compared with their ones in glass ceramics. A method for determining the concentration of ions in the crystalline and glass phases of glass ceramics was proposed on the basis of this comparison. Dependence of Tm3+ and Ho3+ ions distribution between the glass and crystalline phases on different regime of glasses' secondary heat treatment was studied.
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利用吸收光谱分析确定氟化氧玻璃陶瓷的玻璃相和晶体相中的 Tm3+ 和 Ho3+ 离子浓度
基于稀土离子活化的全氟化氧玻璃的光学玻璃陶瓷具有开发激光器和近红外放大器的吸引力,因为它们结合了氟化物晶体的特性、低声子频率以及氧化物基质的化学和机械特性。激活剂离子在玻璃陶瓷的晶体相和玻璃相中的光谱特性会有很大不同。因此,可以通过吸收或发光光谱分析来确定杂质离子在这些相之间的分布情况。这项工作的主要目标是开发一种方法,用于测定掺铥和掺铥钬的全氟化玻璃经过二次热处理后,在玻璃陶瓷的结晶相、PbF2 相和玻璃相中 Tm3+ 和 Ho3+ 离子的浓度。研究了经 Tm3+ 离子活化和经 Tm3+ 与 Ho3+ 离子共活化的全氟化氧玻璃以及经二次热处理后从原始玻璃中获得的玻璃陶瓷的光谱特性。通过 X 射线相分析方法确定,在特定的热处理条件下,这些玻璃中会形成结晶的 β-PbF2 相。将原始玻璃和 β-PbF2 晶体中 Tm3+ 和 Ho3+ 杂质离子的吸收光谱和发光光谱与玻璃陶瓷中的吸收光谱和发光光谱进行了比较。在比较的基础上,提出了确定玻璃陶瓷晶体和玻璃相中离子浓度的方法。研究了 Tm3+ 和 Ho3+ 离子在玻璃相和晶体相之间的分布与玻璃二次热处理的不同制度之间的关系。
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
自引率
25.00%
发文量
18
审稿时长
8 weeks
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