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Optomechanical considerations for the VISAR diagnostic at the National Ignition Facility (NIF)

机译:国家点火设施(NIF)进行VISAR诊断的光机械考虑

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The National Ignition Facility (NIF) requires optical diagnostics for measuring shock velocities in shock physics experiments. The velocity interferometer for any reflector measures shock velocities at a location remote to the NIF target chamber. Our team designed two systems, one for a polar port orientation, and the other to accommodate two equatorial ports. The polar-oriented design requires a 48-m optical relay to move the light from inside the target chamber to a separately housed measurement and laser illumination station. The currently operational equatorial design requires a much shorter relay of 21m. Both designs posed significant optomechanical challenges due to the long optical path length, large quantity of optical elements, and stringent NIF requirements. System design had to tightly control the use of lubricants and materials, especially those inside the vacuum chamber; tolerate earthquakes and radiation; and consider numerous other tolerance, alignment, and steering adjustment issues. To ensure compliance with NIF performance requirements, we conducted a finite element analysis.
机译:国家点火装置(NIF)需要光学诊断程序来测量冲击物理实验中的冲击速度。用于任何反射器的速度干涉仪都可在远离NIF目标室的位置测量冲击速度。我们的团队设计了两个系统,一个用于极地口方位,另一个用于容纳两个赤道口。极地定向设计需要一个48米的光继电器将光从靶室内移动到单独容纳的测量和激光照明站。当前运行的赤道设计需要更短的21m中继。由于较长的光路长度,大量的光学元件和严格的NIF要求,这两种设计都对光机械提出了重大挑战。系统设计必须严格控制润滑剂和材料的使用,尤其是真空室内的润滑剂和材料的使用;承受地震和辐射;并考虑其他许多公差,对准和转向调整问题。为了确保符合NIF性能要求,我们进行了有限元分析。

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