论文标题
大格式自适应镜的光学校准
Optical calibration of large format adaptive mirrors
论文作者
论文摘要
自适应(或可变形)镜子被广泛用作自适应光学系统中的波前校正器。自适应镜的光学校准是其生命周期期间的基本步骤:计算一组已知命令以操作自适应光学系统,以补偿对齐和非公共途径的畸变,以进行切碎或现场稳定的收购。在这项工作中,我们介绍了自适应镜的光学校准的操作顺序,并特别关注大量孔径系统,例如自适应次级。这样的系统将是极大的望远镜的核心组成部分之一。 除了介绍光学程序外,我们还详细讨论了参与者的功能要求和相互作用。通过清楚地标识每个步骤的输入,输出和质量指标:由于高自由度计数(成千上万的执行器),可以通过清楚地识别自动化的特定强调,因此优选一种自动化方法来限制成本和时间表。最后,我们提出了一些评估测量噪声的算法;这一点尤其重要,因为校准设置通常是工业环境中的一个大型设施,在工业环境中,噪声水平可能是主要的表演者。
Adaptive (or deformable) mirrors are widely used as wavefront correctors in adaptive optics systems. The optical calibration of an adaptive mirror is a fundamental step during its life-cycle: the process is in facts required to compute a set of known commands to operate the adaptive optics system, to compensate alignment and non common-path aberrations, to run chopped or field-stabilized acquisitions. In this work we present the sequence of operations for the optical calibration of adaptive mirrors, with a specific focus on large aperture systems such as the adaptive secondaries. Such systems will be one of the core components of the extremely large telescopes. Beyond presenting the optical procedures, we discuss in detail the actors, their functional requirements and the mutual interactions. A specific emphasys is put on automation, through a clear identification of inputs, outputs and quality indicators for each step: due to a high degrees-of-freedom count (thousands of actuators), an automated approach is preferable to constraint the cost and schedule. In the end we present some algorithms for the evaluation of the measurement noise; this point is particularly important since the calibration setup is typically a large facility in an industrial environment, where the noise level may be a major show-stopper.