首页> 外文会议>Conference on target diagnostics physics and engineering for inertial confinement fusion >Alignment of an x-ray imager line of sight in the National Ignition Facility (NIF) target chamber using a Diagnostic Instrument Manipulator (DIM) and Opposed Port Alignment System (OPAS)
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Alignment of an x-ray imager line of sight in the National Ignition Facility (NIF) target chamber using a Diagnostic Instrument Manipulator (DIM) and Opposed Port Alignment System (OPAS)

机译:使用诊断仪器机械手(DIM)和相对的端口对准系统(OPA)对准国家点火设施(NIF)目标室的X射线成像仪视线的对准

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The National Ignition Facility (NIF) fields multiple varieties of x-ray imaging systems used to diagnose the implosionphysics of laser-driven fusion targets. The imagers consist of time-resolved x-ray detectors coupled with a snoutassembly for spatial and/or spectral imaging. The instrument is mounted onto a cart that extends into the NIF targetchamber, placing it in close proximity to the target and aligning with a tight tolerance using the Opposed Port AlignmentSystem (OPAS). The OPAS is a modified, commercial Schmidt-Cassegrain optical telescope mounted at the targetchamber port, opposite the Diagnostic Instrument Manipulator (DIM). In this paper, the approach used to characterizeand align the x-ray imaging instruments is described. The characterization includes offline measurements of the pinholeassembly and the detector housing. Online, deviations of the DIM, as it is inserted along rails toward the target chambercenter, are characterized and related to the OPAS view. An overview of the offline measurement stations is providedalong with the process to develop the relationship between the offline alignment scopes and the OPAS as a function ofDIM insertion. The combination of these measurements is used to mathematically construct the predicted location of thex-ray imager line of sight in the OPAS image space and determine the desired pinhole location to record data on a fusionexperiment. The alignment accuracy of this approach will be discussed, as demonstrated with various x-ray instrumentsand pinhole configurations.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:国家点火设施(NIF)领域多种X射线成像系统,用于诊断激光驱动融合目标的内弧菌。该成像器由时间分辨的X射线探测器组成,其与SnoutAssembly耦合,用于空间和/或光谱成像。仪器安装在推车上,该推车延伸到NIF靶景体中,将其靠近目标,并使用相对的端口对齐系统(OPAS)与紧密的公差对齐。 OPA是一个用于安装在靶镜头端口的修改,商用Schmidt-Cassegrain光学望远镜,与诊断仪器机械手(DIM)相对。在本文中,描述了用于表现对准X射线成像仪器的方法。表征包括针头释放和探测器壳体的离线测量。在线,暗淡的偏差,因为它沿着朝向目标腔室中心插入轨道,其特征在于和与OPAS视图相关。带有offline测量站的概述是具有开发离线对准范围和OPAS之间的关系的过程,作为DIM插入的函数。这些测量的组合用于数学地构造在OPA图像空间中的X射线成像仪视线的预测位置,并确定所需的针孔位置以在融合前提下记录数据。这种方法的对准精度将要讨论的,与各个x射线证实,仪器,针孔配置。©图片-光学仪器工程师(2012)版权协会(SPIE)。仅供个人使用的摘要下载。

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