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ID:33012521
大小:2.98 MB
页数:61页
时间:2019-02-19
《高重复频率飞秒激光在熔融石英中制备光波导的实验分析》由会员上传分享,免费在线阅读,更多相关内容在行业资料-天天文库。
1、目录第1章绪论.................................................................................................................11.1引言.................................................................................................................11.2飞秒激光微加工技术......................
2、...............................................................11.3光子晶体光纤飞秒激光发展进展.................................................................31.4飞秒激光制作光波导的进展.........................................................................41.5选题意义、研究内容及创新点......................
3、...............................................7第2章飞秒激光制备光波导技术和波导参数测量方法.........................................92.1飞秒激光加工透明电介质理论.....................................................................92.1.1光电离过程.................................................................
4、.........................92.1.2雪崩电离过程....................................................................................102.2飞秒激光诱导电介质折射率变化原理........................................................112.3飞秒激光制备光波导技术简介..........................................................
5、..........122.3.1飞秒激光光源系统............................................................................122.3.2制备方式............................................................................................132.4飞秒激光直写的光波导的性能表征及测量...............................................
6、152.4.1改性区尺寸........................................................................................152.4.2横端面纵横比....................................................................................152.4.3折射率分布.................................................................
7、.......................182.4.4传输损耗............................................................................................202.5本章小结.......................................................................................................20第3章高重复频率飞秒激光加工系统..................
8、.................................................213.1飞秒激光微加工实验系统.................
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