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高效衍射光栅的高产制造的修剪方法。

Trimming method for a high-yield manufacturing of high-efficiency diffraction gratings.

出版信息

Opt Lett. 2018 Aug 15;43(16):4017-4020. doi: 10.1364/OL.43.004017.

Abstract

The tolerances in manufacturing of fully dielectric diffraction gratings based on the leaky-mode resonance in the -1st diffraction order can be challenging, especially if the grating design exhibits high diffraction efficiency (DE) only within a comparatively narrow spectral bandwidth. To gain improved control on the spectral bandwidth exhibiting high DE, we implemented a two-step etching approach within the fabrication process of the grating. First, a dry and anisotropic etching step was used for pre-shaping the grating, followed by iterative isotropic wet-etching steps using an alkaline solution (KOH) at a temperature of 90°C to adjust the maximum efficiency around the desired wavelength with high precision. This straightforward method gave us very good control on tailoring the DE as a function of the wavelength and led to the demonstration of DEs as high as 99.7±0.2% in the -1st diffraction order at a wavelength of 1030 nm and of >99% in the wavelength range between 1020 and 1070 nm. The gratings were used as cavity end mirrors of an Yb:YAG thin-disk laser, generating an output power of 145 W in fundamental mode operation (M<1.1).

摘要

基于 -1 阶漏模共振的全介质衍射光栅的制造公差可能具有挑战性,特别是如果光栅设计仅在相对较窄的光谱带宽内表现出高衍射效率 (DE)。为了在具有高 DE 的光谱带宽上获得更好的控制,我们在光栅的制造过程中实施了两步刻蚀方法。首先,使用干法各向异性刻蚀对光栅进行预成型,然后使用温度为 90°C 的碱性溶液 (KOH) 进行多次各向同性湿法刻蚀,以高精度调整所需波长附近的最大效率。这种简单的方法使我们能够非常精确地控制 DE 作为波长的函数,从而在 1030nm 波长处实现高达 99.7±0.2%的 -1 阶衍射效率,在 1020nm 至 1070nm 波长范围内实现了>99%的 DE。这些光栅用作 Yb:YAG 薄圆盘激光器的腔端镜,在基模 (M<1.1) 下产生 145W 的输出功率。

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