Volume 42 Issue 9
Feb.  2014
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Chen Yue'e. Spectrum properties of laser glass formulation[J]. Infrared and Laser Engineering, 2013, 42(9): 2426-2430.
Citation: Chen Yue'e. Spectrum properties of laser glass formulation[J]. Infrared and Laser Engineering, 2013, 42(9): 2426-2430.

Spectrum properties of laser glass formulation

  • Received Date: 2013-01-05
  • Rev Recd Date: 2013-02-09
  • Publish Date: 2013-09-25
  • Glass formulation design is particularly important in laser glass preparation processes according to predetermined qualification. Traditional calculation systems of physical properties of inorganic oxide glass were outstanding representatives, but those systems usually do not involve glass spectral characteristics. The absorption properties of glass were calculated by considering the intrinsic vibration frequency and amplitude of doped laser glass and considering the Sellmeier equation and dispersion curve together. If the formulation design is changed based on the calculated glass spectrum performance, it could greatly shorten the development cycle and ensure quickly to find an optimal formulation in experiments. It is proved in the experiments that these formulations could be used to generate favorable glass states after the cooling process.
  • [1] Liu Yuehui, Chen Dongdan, Hou Zhiyuan. Optical properties of Er3+ in TeO2-based oxyhalide glasses pumped by 977 nm[J]. Acta Phys Sin, 2005, 54(1): 422-427. (in Chinese) 刘粤惠, 陈东丹, 候志远. 977 nm抽运下掺铒碲酸盐基氧卤玻璃的光谱特性[J]. 物理学报, 2005, 54(1): 422.
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    [3] Qian Qi, Wang Yan, Zhang Qinyuan, et al. Optical characterization of ultraviolet laser photosensitive Er3+-doped bismuth-silicate glasses[J]. Acta Phys Sin, 2007, 56(5): 2736-2740. (in Chinese) 钱奇, 王琰, 张勤远, 等. 可紫外激光刻写的掺铒铋硅酸盐玻璃光谱性质研究[J]. 物理学报, 2007, 56(5): 2736-2740.
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    [5] Gan Fuxi. Inorganic Glass Calculation and Component Design[M]. Shanghai: Shanghai Science and Technology Press, 1981. (in Chinese) 干福熹. 无机玻璃物理性质计算和成分设计[M]. 上海: 上海科技出版社, 1981.
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    [7] Wang Zebin. Structure of software GE-SYSTEM and theoretical basis of computation[J]. Glass and Enamel, 2006, 34(5): 16-18. (in Chinese) 王泽斌. GE-SYSTEM软件结构和计算理论依据[J]. 玻璃与搪瓷, 2006, 34(5): 16-18.
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    [10] Liu Lisha, L Shuchen, Sun Jiangting. Spectroscopic properties and up-conversion luminescence Er3+/Yb3+ co-doped TeO2-WO3-Bi2O3 glas[J]. Acta Phys Sin, 2010, 59(9): 6637-6641. (in Chinese) 刘丽莎, 吕树臣, 孙江亭. Er3+/Yb3+共掺TeO2-WO3-Bi2O3玻璃的光谱性质和上转换发光[J]. 物理学报, 2010, 59(9): 6637-6641.
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    [13] Chen Yue'e, Wang Yong, Qu Peixin. Alkali and alkaline earth metal on Yb(3+) affect the physical and optical properties of doped silicate laser glass[J]. Infrared and Laser Engineering, 2012, 42(7): 67. (in Chinese) 陈月娥, 王勇, 曲蓓新. 碱金属碱土金属对Yb(3+)掺杂硅酸盐激光玻璃的物理和光学特性影响[J]. 红外与激光工程, 2012, 42(7): 67.
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Spectrum properties of laser glass formulation

  • 1. College of Science,Yanshan University,Qinhuangdao 066004,China;
  • 2. Canalaser Technologies Co.,Ltd.,Ningbo 315336,China

Abstract: Glass formulation design is particularly important in laser glass preparation processes according to predetermined qualification. Traditional calculation systems of physical properties of inorganic oxide glass were outstanding representatives, but those systems usually do not involve glass spectral characteristics. The absorption properties of glass were calculated by considering the intrinsic vibration frequency and amplitude of doped laser glass and considering the Sellmeier equation and dispersion curve together. If the formulation design is changed based on the calculated glass spectrum performance, it could greatly shorten the development cycle and ensure quickly to find an optimal formulation in experiments. It is proved in the experiments that these formulations could be used to generate favorable glass states after the cooling process.

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