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PYRAMIR: Calibration and operation of a pyramid near-infrared wavefront sensor

机译:PYRAMIR:金字塔型近红外波前传感器的校准和操作

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The concept of pyramid wavefront sensors (PWFSs) has been around about a decade by now. However there is still a great lack of characterizing measurements that allow the best operation of such a system under real life conditions at an astronomical telescope. In this article we, therefore, investigate the behavior and robustness of the pyramid infrared wavefront sensor PYRAMIR mounted at the 3.5 m telescope at the Calar Alto Observatory under the influence of different error sources both intrinsic to the sensor and arising in the preceding optical system. The intrinsic errors include diffraction effects on the pyramid edges and detector readout noise. The external imperfections consist of a Gaussian profile in the intensity distribution in the pupil plane during calibration, the effect of an optically resolved reference source, and noncommon-path aberrations. We investigated the effect of three differently sized reference sources on the calibration of the PWFS. For the noncommon-path aberrations the quality of the response of the system is quantified in terms of modal cross talk and aliasing. We investigate the special behavior of the system regarding tip-tilt control. From our measurements we derive the method to optimize the calibration procedure and the setup of a PWFS adaptive optics (AO) system. We also calculate the total wavefront error arising from aliasing, modal cross talk, measurement error, and fitting error in order to optimize the number of calibrated modes for on-sky operations. These measurements result in a prediction of on-sky performance for various conditions.
机译:到现在为止,金字塔波前传感器(PWFS)的概念已经存在了大约十年。但是,仍然缺少足够的表征测量结果,无法在天文望远镜的真实生活条件下使此类系统发挥最佳作用。因此,在本文中,我们将研究安装在Calar Alto天文台3.5 m望远镜上的金字塔红外波阵面传感器PYRAMIR的性能和鲁棒性,该影响是传感器固有的以及先前光学系统中产生的不同误差源的影响。固有误差包括金字塔边缘的衍射效应和检测器读数噪声。外部缺陷包括校准过程中光瞳平面中强度分布的高斯分布,光学分辨参考源的影响以及非共通像差。我们研究了三种不同尺寸的参考源对PWFS校准的影响。对于非公共路径像差,根据模态串扰和混叠来量化系统响应的质量。我们研究了有关倾斜控制的特殊行为。从我们的测量中,我们得出了优化校准程序和PWFS自适应光学(AO)系统设置的方法。我们还计算了由混叠,模态串扰,测量误差和拟合误差引起的总波前误差,以便针对空中操作优化校准模式的数量。这些测量结果可以预测各种条件下的空中表演。

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