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Estimate low and high order wavefront using P1640 Calibrator measurements

机译:使用P1640校准器测量估计低位和高阶波前

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P1640 high contrast imaging system on the Palomar 200 inch Telescope consists of an apodized-pupil Lyot coronagraph, the PALM-3000 adaptive optics (P3K-AO), and PI640 Calibrator (CAL). Science images are recorded by an integral field spectrograph covering J-H bands for detecting and characterizing stellar companions. With aberrations from atmosphere corrected by the P3K-AO, instrument performance is limited mainly by the quasi-static speckles due to non-common path wavefront aberrations for the light to propagate to the P3K-AO wavefront sensor and to the coronagraph mask. The non-common path wavefront aberrations are sensed by CAL, which measures the post-coronagraph E-field using interferometry, and can be effectively corrected by offsetting the P3K-AO deformable mirror target position accordingly. Previously, we have demonstrated using CAL measurements to correct high order wavefront aberrations, which is directly connected to the static speckles in the image plane. Low order wavefront, on the other hand, usually of larger amplitudes, causes light to leak through the coronagraph making the whole image plane brighter. Knowledge error in low order wavefront aberrations can also affect the estimation of the high order wavefront. Even though, CAL is designed to sense efficiently high order wavefront aberrations, the low order wavefront front can be inferred with less sensitivity. Here, we describe our method for estimating both low and high order wavefront aberrations using CAL measurements by propagating the post-coronagraph E-field to a pupil before the coronagraph. We present the results from applying this method to both simulated and experiment data.
机译:P1640高对比度成像系统上的Palomar 200英寸望远镜由一个悬浮的瞳孔Lyot调节,Palm-3000自适应光学器件(P3K-AO)和PI640校准器(CAL)组成。科学图像由覆盖j-h频带的积分场光谱仪进行记录,用于检测和表征恒星伴侣。由于P3K-AO校正的大气中的像差,由于光的非公共路径波前像差,仪器性能主要受到准静态斑点的限制,这是用于光的非公共道波前像差传播到P3K-AO波前传感器和血管掩模。通过CAR来感测非公共路径波前像差,其使用干涉测量测量后调节器E场,并且可以通过相应地偏移P3K-AO可变形镜子目标位置来有效地校正。以前,我们已经展示了使用CAL测量来纠正高阶波前像差,该波线像差直接连接到图像平面中的静态斑点。另一方面,低阶波前,通常具有较大的振幅,使光通过调节器泄漏,使得整个图像平面更亮。低阶波前像差的知识错误也可以影响高阶波前的估计。尽管如此,CAL旨在有效地感测高阶波前像差,低阶波前前线可以推断出较少的灵敏度。在这里,我们描述了我们使用CAL测量来估计低级和高阶波前像差,通过在凝结冠状动脉前传播到瞳孔来估计低阶和高阶波前像差。我们将该方法应用于模拟和实验数据。

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