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Status of Optical Coatings for the National Ignition Facility

机译:国家点火设施用光学涂层的现状

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Optical coatings are a crucial part of the pulse trapping and extraction in the NIF multipass amplifiers. Coatings also steer the 192 beams from four linear arrays to four converging cones entering the target chamber. There are a total of 1600 physical vapor deposited coatings on NIF consisting of 576 mirrors within the multipass cavity, 192 polarizers that work in tandem with a Pockels cell to create an optical switch, and 832 transport mirrors. These optics are of sufficient size so that they are not aperture-limiting for the 40-cm x 40 cm beams over an incident range of 0 to 56.4 degrees. These coatings must withstand laser fluences up to 25 J/cm~2 at 1053 nm (1ω) and 3-ns pulse length and are the 1ω fluence-limiting component on NIF. The coatings must have a minimal impact on the beam wavefront and phase to maintain beam focusability, minimize scattered loss, and minimize nonlinear damage mechanisms. This is achieved by specifications ranging from <50 MPa coating stress, <1% coating nonuniformity, <4A RMS surface roughness, and a PSD specification to control the amplitude of periodic spatial frequencies. Finally, the primary mission of optical coatings is efficient beam steering so reflection and transmission losses are specified as R>99.5% and >99% for mirrors and polarizers, respectively, and T>98% for polarizers.
机译:光学涂层是NIF多通放大器中脉冲捕获和提取的关键部分。涂层还将192束光束从四个线性阵列引导到进入目标腔室的四个会聚锥。 NIF上总共有1600个物理气相沉积涂层,包括多道腔内的576个反射镜,192个偏振器(与Pockels盒协同工作以创建光开关)和832个传输镜。这些光学器件具有足够的尺寸,因此对于入射角为0至56.4度的40 cm x 40 cm光束,它们没有孔径限制。这些涂层必须在1053 nm(1ω)和3 ns的脉冲长度下承受最高25 J / cm〜2的激光能量密度,并且是NIF上1ω能量密度限制的成分。涂层必须对光束的波前和相位产生最小的影响,以保持光束的聚焦性,最小化散射损耗和最小化非线性损伤机制。这可以通过以下范围内的规范实现:范围小于50 MPa的涂层应力,小于1%的涂层不均匀性,小于4A RMS的表面粗糙度和PSD规范,以控制周期性空间频率的幅度。最后,光学涂层的主要任务是有效的光束转向,因此对于反射镜和偏振镜,反射和透射损耗分别指定为R> 99.5%和> 99%,对于偏振镜,T> 98%。

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