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Optical channel waveguides written by high repetition rate femtosecond laser irradiation in Li-Zn fluoroborate glass

机译:高重复率飞秒激光辐照在氟锌硼酸锂玻璃中写入的光通道波导

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摘要

Low loss, optical channel waveguides have been successfully produced by high repetition rate femtosecond laser inscription in a Li–Zn fluoroborate glass (64.9B~(2)O~(3) + 25Li~(2)O + 10ZnF~(2) + 0.1Er~(2)O~(3)). High quality waveguides were produced at 500 kHz, 1 MHz and 2 MHz laser repetition rates, showing a refractive index contrast in the range of 3–6 × 10_(−3)depending on laser fluences. Dependence of experimental parameters such as average laser power, pulse repetition rate and writing speed on the properties of fabricated waveguides has been discussed. The comparison of optical and compositional characterization techniques evidences an enrichment of B and Zn in the guiding region, while F migrates to the heat diffused region of the written structure.
机译:通过高重复率飞秒激光在Li-Zn氟硼酸玻璃(64.9B〜(2)O〜(3)+ 25Li〜(2)O + 10ZnF〜(2)+ 0.1Er〜(2)O〜(3))。高质量的波导以500 kHz,1 MHz和2 MHz的激光重复频率产生,其折射率对比度在3–6×10 _(-3)范围内,具体取决于激光能量密度。讨论了诸如平均激光功率,脉冲重复频率和写入速度等实验参数对所制作波导的性能的依赖性。光学和成分表征技术的比较表明,引导区域中的B和Zn富集,而F迁移至书写结构的热扩散区域。

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