利用超快红外激光器和相位掩模在光纤和波导中诱导布拉格光栅

S. Mihailov, D. Grobnic, C. Smelser, P. Lu, R. Walker, H. Ding
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引用次数: 41

摘要

自2003年发展以来,利用超快红外辐射和相位掩模在光纤和波导中刻字的布拉格光栅技术已被证明与标准紫外激光光栅刻字技术一样简单,但用途更加广泛。基于超快红外激光的工艺允许在玻璃和晶体材料中创建光栅结构,而这些材料通常不具有紫外线光敏性。在本文中,我们将回顾加拿大通信研究中心在光栅形成过程以及超快激光技术在各种光纤和波导中制造光栅的应用方面所进行的研究。
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Induced Bragg Gratings in Optical Fibers and Waveguides Using an Ultrafast Infrared Laser and a Phase Mask
Since its development in 2003, the technique of Bragg grating inscription in optical fibers and waveguides with ultrafast infrared radiation and a phase mask has proven to be as simple as the standard UV-laser grating writing techniques but far more versatile. The ultrafast IR laser-based process allows for the creation of grating structures in glassy and crystalline materials that are not typically UV photosensitive. In this article, we will review the studies that have been performed at the Communications Research Centre Canada on the grating formation processes as well as applications of the ultrafast laser technique to fabricate gratings in various optical fibers and waveguides.
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