Design, production, and reverse engineering of a double sided innovative thin film laser element

M. Trubetskov, T. Amotchkina, A. Tikhonravov, L. Veisz, V. Pervak
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Abstract

In the present work, an innovative optical element developed for the multiterawatt few-cycle light wave synthesizer based on optical parametric amplification is demonstrated. The synthesizer currently produces sub-5-fs, 80-mJ, 18-TW pulses. The required element had to be deposited on 15 mm substrate having 75 mm in diameter; an average value of the GDD of +75 fs2 and reflectance exceeding 99% in the spectral wavelength region from 570 to 1030 nm. Mechanical stresses of the designed dispersive mirror (DM) caused the substrate bending that distorts wave front quality resulting in the distorting of the beam waveform of laser system. In order to compensate this mechanical stress, the substrate back side was covered by an antireflection coating providing the lowest possible reflection in the working spectral range, having the total physical thickness close to DM thickness and total thicknesses of Nb2O5/SiO2 layers close to the corresponding total thicknesses of Nb2O5/SiO2 in DM. The produced DM-AR optical element exhibits excellent spectral properties.
双面创新薄膜激光元件的设计、生产和逆向工程
本文介绍了一种基于光参量放大的多太瓦少周期光波合成器的光学元件。该合成器目前可产生低于5-fs, 80-mJ, 18-TW的脉冲。所需元件必须沉积在直径为75毫米的15毫米基板上;GDD平均值为+75 fs2,在570 ~ 1030 nm的光谱波长范围内反射率超过99%。所设计的色散镜(DM)的机械应力引起基片弯曲,使波前质量发生畸变,从而导致激光系统光束波形的畸变。为了补偿这种机械应力,衬底背面覆盖了一层增透涂层,使其在工作光谱范围内的反射率尽可能低,总物理厚度接近DM厚度,Nb2O5/SiO2层的总厚度接近DM中Nb2O5/SiO2的相应总厚度。所制备的DM- ar光学元件具有优异的光谱性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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