首页> 外文会议>Optical System Alignment and Tolerancing; Proceedings of SPIE-The International Society for Optical Engineering; vol.6676 >Optical alignment techniques for line-imaging velocity interferometry and line-imaging self-emission of targets at the National Ignition Facility (NIF)
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Optical alignment techniques for line-imaging velocity interferometry and line-imaging self-emission of targets at the National Ignition Facility (NIF)

机译:国家点火装置(NIF)的线成像速度干涉法和目标的线成像自发射的光学对准技术

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The National Ignition Facility (NIF) requires optical diagnostics for measuring shock velocities in shock physics experiments. The nature of the NIF facility requires the alignment of complex three-dimensional optical systems of very long distances. Access to the alignment mechanisms can be limited, and any alignment system must be operator-friendly. The Velocity Interferometer System for Any Reflector (VISAR) measures shock velocities and shock breakout times of 1- to 5-mm targets at a location remote to the NIF target chamber. A third imaging system measures self-emission of the targets. These three optical systems using the same vacuum chamber port each have a total track of 21 m. All optical lenses are on kinematic mounts or sliding rails, enabling pointing accuracy of the optical axis to be systematically checked. Counter-propagating laser beams (orange and red) align these diagnostics to a listing of tolerances. Floating apertures, placed before and after lens groups, display misalignment by showing the spread of alignment spots created by the orange and red alignment lasers. Optical elements include 1-in. to 15-in. diameter mirrors, lenses with up to 10.5-in. diameters, beam splitters, etalons, dove prisms, filters, and pellicles. Alignment of more than 75 optical elements must be verified before each target shot. Archived images from eight alignment cameras prove proper alignment is achieved before each shot.
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。 NIF设备的性质要求将很长距离的复杂三维光学系统对准。可以限制对中机构的访问,并且任何对中系统都必须对操作员友好。适用于任何反射器的速度干涉仪系统(VISAR)可在远离NIF目标室的位置测量1至5毫米目标的冲击速度和冲击爆发时间。第三成像系统测量目标的自我发射。这三个使用相同真空腔端口的光学系统的总轨迹均为21 m。所有光学透镜均位于运动学安装座或滑轨上,从而可以系统地检查光轴的指向精度。反向传播的激光束(橙色和红色)将这些诊断与公差列表对齐。放置在透镜组之前和之后的浮动光圈通过显示橙色和红色对准激光器产生的对准点的散布来显示未对准。光学元件包括1英寸。至15英寸直径的镜子,最大10.5英寸的镜片。直径,分束器,标准具,鸽子棱镜,滤光片和防护膜。在每次目标射击之前,必须验证超过75个光学元件的对准情况。来自八台对准摄像机的存档图像证明在每次拍摄之前已实现正确的对准。

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