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FIBRE BRAGG GRATING FABRICATION IN GERMANOSILICATE FIBRES WITH 244NM FEMTOSECOND LASER LIGHT

机译:纤维布拉格光栅在锗硅酸盐纤维中的制造,具有244nm Femtosecond激光

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The ability to fabricate strong and extraordinarily stable Bragg gratings in any type of fibre using femtosecond laser light has attracted much interest in the recent past. The induced index change has been attributed to glass densification brought about by nonlinear multiphoton ionisation resulting in bond breaking, local melting and rapid cooling occurring after optical breakdown by the high-energy femtosecond light. In this paper, a preliminary comparative study between fibre Bragg grating fabrication in germanosilicate fibre using 244nm femtosecond source with a repetition rate of 250kHz and 200fs pulse duration and a 244nm CW frequency doubled argon-ion source is presented. The reflectivities achieved in both cases were close to identical for similar writing fluences, as were the isochronal annealing profiles. This indicated that despite the very high repetition rate used, the collective heat generated by the femtosecond radiation plays no role in the compaction of the glass matrix. The index change observed in this case is a result of single photon absorption into known defect centres - the laser intensity was insufficient to excite the glass band edge leading to glass compaction. No qualitative difference in index change between CW and short-pulse excitation of these defects is found.
机译:使用Femtosecond激光使用Femtosecond Laser的任何类型的纤维中制造强大稳定的布拉格光栅的能力在最近的过去引起了很多兴趣。诱导指数变化归因于非线性多相电离引起的玻璃致密化,导致通过高能小费光光在光学分解后发生粘合,局部熔化和快速冷却。本文介绍了使用244nm飞秒源的锗硅酸盐光纤在锗硅酸盐纤维中的初步比较研究,具有250kHz和200FS脉冲持续时间的重复率和244nm CW频率加倍的氩离子源。在两种情况下实现的反射性与类似的写入流量相同,与同胞影式退火型材一样。这表明,尽管使用了非常高的重复率,但是由飞秒辐射产生的集体热在玻璃基质的压实中不起作用。在这种情况下观察到的指数变化是单个光子吸收成已知缺陷中心的结果 - 激光强度不足以激发玻璃带边缘,导致玻璃压实。发现,发现CW与短脉冲激发之间的指数变化没有定性差异。

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