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Volumetric modifications in fused silica using Gaussian and Bessel femtosecond laser beams

机译:使用高斯和贝塞尔飞秒激光束熔融二氧化硅中的容量修改

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In this work we present the results on volumetric fused silica modifications using femtosecond Gaussian and Gaussian-Bessel laser beams. We show that for specific photonic device, like volume Bragg grating, fabrication, Bessel beams are more superior to Gaussian, as the recording process is much faster and fabricated devices have better efficiencies. Also Gaussian beam tend to be more efficient in formation of nanogratings that causes the appearance of birefringence in modified zones. This reduces optical quality of fabricated device and limits overall recording velocity. We have successfully fabricated volume Bragg gratings in the bulk of fused silica that had absolute diffraction efficiencies reaching ~90% using femtosecond Gaussian-Bessel beam, while gratings made with Gaussian beam reached only 60%.
机译:在这项工作中,我们使用飞秒高斯和高斯 - 贝塞尔激光束介绍了体积熔融二氧化硅修改的结果。 我们表明,对于特定的光子器件,如体积布拉格光栅,制造,贝塞尔梁更优于高斯,因为记录过程更快,制造的设备具有更好的效率。 此外,高斯光束往往更有效地形成纳米林,导致修改区域中的双折射的外观。 这降低了制造装置的光学质量并限制了整体记录速度。 我们已经成功地制造了在融合二氧化硅的大部分熔化二氧化硅中制造的卷Bragg光栅,其使用飞秒高斯 - 贝塞尔梁达到〜90%,而使用高斯梁制成的光栅仅达到60%。

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