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Surface and bulk effects in silica fibers caused by 405 nm CW diode laser irradiation and means for mitigation

机译:405 nm CW二极管激光辐照在石英纤维中产生的表面和整体效应以及缓解方法

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Surface and bulk effects in silica optics due to high intensity laser light are well known using short pulse and high power laser systems. Surfaces are quickly destroyed mechanically if not properly prepared and thoroughly cleaned. Linear and non-linear absorption of high intensity laser light in the bulk of the optics causes material modifications, like voids, cracks and UV defects. In ablation experiments with very short pulses on wide band-gap dielectrics, periodic surface structures in the form of ripples were found. Surprisingly, we found similar structures on fiber end-faces after long-term irradiation with 405 nm CW laser light. Power densities on the end-face are in the range of 1 MW/cm~2, three magnitudes of order below the power threshold at which the described damages occur. Nevertheless a ripple structure perpendicular to the polarization direction of the laser was formed and grows with irradiation time. An increased absorption band at 214 nm (E' center) along the fiber was discovered by spectral absorption measurements. E' centers can be generated by 405 nm laser light in the bulk, therefore defects on the surface are possible as well. The generation of defect centers on the silica surface can enhance the formation of an unstable surface layer.
机译:使用短脉冲和高功率激光系统,由于高强度激光而引起的石英光学中的表面和整体效应是众所周知的。如果未正确准备和彻底清洁,则表面会很快被机械破坏。光学元件中的高强度激光的线性和非线性吸收会导致材料改性,例如空隙,裂缝和紫外线缺陷。在宽带隙电介质上用非常短的脉冲进行的烧蚀实验中,发现了以波纹形式出现的周期性表面结构。出乎意料的是,在用405 nm CW激光长期照射后,我们在光纤端面上发现了类似的结构。端面上的功率密度在1 MW / cm〜2的范围内,比所描述的损坏发生的功率阈值低三个数量级。然而,垂直于激光的偏振方向形成了波纹结构,并且该波纹结构随着照射时间而增长。通过光谱吸收测量发现,沿着光纤在214 nm(E'中心)处吸收带增加。大量的405 nm激光会产生E'中心,因此表面上的缺陷也是可能的。在二氧化硅表面上产生缺陷中心可以增强不稳定表面层的形成。

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