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Optical and thermal stability of Ge-as-Se chalcogenide glasses for femtosecond laser writing

机译:飞秒激光写入Ge-as-Se硫族化物玻璃的光学和热稳定性

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摘要

Chemically stoichiometric chalcogenide glasses of xGeSe(2)-(100-x)As2Se3 (x = 0, 20, 40, 60, 80) have been synthesized by using the melt-quenching method, and their optical and thermal stability for femtosecond laser writing have been investigated. It was found that, glass transition temperature increases while thermal expansion coefficient decreases with increasing Ge contents. The laser-induced damage threshold under 800 nm and 4.0 mu m fs laser irradiation was also investigated. They are 183.8 and 323.97 mJ/cm(2) at 800 nm and 4.0 mu m for 80GeSe(2)-20As(2)Se(3), being 1.61 and 2.02 times higher than the sizes of As2Se3 glasses, respectively. The introduction of Ge can significantly improve the optical and thermal stability of Ge-As-Se glasses that are promising in the application of high-stability photonic device prepared by femtosecond laser writing.
机译:使用熔化淬火方法合成了xGeSe(2)-(100-x)As2Se3(x = 0、20、40、60、80)的化学计量硫属元素化物玻璃,其光学和热稳定性对飞秒激光写入而言已被调查。发现随着Ge含量的增加,玻璃化转变温度升高而热膨胀系数降低。还研究了在800 nm和4.0μm fs激光辐照下的激光损伤阈值。对于80GeSe(2)-20As(2)Se(3),它们在800 nm和4.0μm处分别为183.8和323.97 mJ / cm(2),分别比As2Se3玻璃的尺寸高1.61和2.02倍。 Ge的引入可以显着改善Ge-As-Se玻璃的光学和热稳定性,这在飞秒激光写入制备的高稳定性光子器件的应用中很有希望。

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