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Restoration of absolute diffraction efficiency and blaze angle of carbon contaminated gratings by ultraviolet cleaning

机译:通过紫外线清洗恢复碳污染光栅的绝对衍射效率和闪耀角

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An UV cleaning technique has been used for the removal of carbon contamination from grating surface, using oxygen free-radicals generated by the absorption of UV radiation (172 nm) in atmospheric oxygen. The extent of restoration of absolute diffraction efficiency (ADE) and grating blaze angle of a carbon-contaminated variable line-spaced concave grating (average line spacing of 1200 lines/mm, blaze angle 3.2 deg, and blaze wavelength 10 nm) has been studied over a 5-70 nm wavelength range. The contamination (due to prolonged use in extreme-ultraviolet spectrograph) resulted in a drastic reduction in the diffraction efficiency of grating, along with a change in the blaze angle. The UV cleaning led to the restoration of blaze angle as well as to an increase in the ADE by more than an order of magnitude for the first two diffraction orders (i.e., from ~0.2 to ~7.2%) for the first diffraction order and 0.1 to ~5% for the second diffraction order at the blaze wavelength. The study is useful for the restoration of carbon-contaminated costly optics.
机译:紫外线清洁技术已被用于去除光栅表面的碳污染物,该技术使用的是通过吸收大气中氧气中紫外线(172 nm)产生的氧自由基。研究了碳污染可变线距凹面光栅的平均衍射效率(ADE)和光栅闪耀角(平均线距为1200行/ mm,闪耀角为3.2度,闪耀波长为10 nm)的恢复程度。在5-70 nm波长范围内。污染(由于在极端紫外光谱仪中的长期使用)导致光栅的衍射效率大大降低,并且闪耀角发生了变化。 UV清洗导致闪耀角的恢复,以及前两个衍射级的ADE的增加幅度超过一个数量级(即,从第一个衍射级的〜0.2到〜7.2%)和0.1在炽热波长处的第二衍射级为〜5%。该研究对于恢复碳污染的昂贵光学器件很有用。

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