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Ultrafast laser inscription of Bragg-grating waveguides using the multiscan technique

机译:使用多扫描技术的布拉格光栅波导的超快激光刻写

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摘要

We report the fabrication of high-strength (>30 dB) first order Bragg-grating waveguides in borosilicate glass substrates using ultrafast laser inscription. The cross section of each waveguide was controlled using the well known multiscan fabrication technique, where the desired waveguide cross section is constructed by scanning the sample through the laser focus multiple times. In order to fabricate high-strength gratings, it was therefore necessary to precisely control and spatially synchronize the refractive index modulations imprinted in the material by each scan. The Bragg-grating waveguides were inscribed using a femtosecond fiber laser that was externally modulated using an acousto-optic modulator. The required precision in the laser modulation was thus achieved by triggering the acousto-optic modulator using a position sensitive trigger signal supplied by the substrate translation stages themselves.
机译:我们报道了使用超快激光刻写在硼硅酸盐玻璃基板中制造高强度(> 30 dB)的一阶布拉格光栅波导。使用众所周知的多扫描制造技术来控制每个波导的横截面,在该技术中,通过多次扫描样品通过激光聚焦来构造所需的波导横截面。为了制造高强度光栅,因此有必要精确地控制并在空间上同步每次扫描印在材料上的折射率调制。布拉格光栅波导是用飞秒光纤激光器刻写的,飞秒光纤激光器是通过声光调制器外部调制的。因此,通过使用由基板平移台自身提供的位置敏感触发信号来触发声光调制器,可以达到所需的激光调制精度。

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