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Experimental validation of coronagraphic focal-plane wavefront sensing for future segmented space telescopes

机译:对未来分段空间望远镜冠状动脉焦面波前感应的实验验证

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Context. Direct imaging of Earth-like planets from space requires dedicated observatories, combining large segmented apertures with instruments and techniques such as coronagraphs, wavefront sensors, and wavefront control in order to reach the high contrast of 10~(10)that is required. The complexity of these systems would be increased by the segmentation of the primary mirror, which allows for the larger diameters necessary to image Earth-like planets but also introduces specific patterns in the image due to the pupil shape and segmentation and making high-contrast imaging more challenging. Among these defects, the phasing errors of the primary mirror are a strong limitation to the performance. Aims. In this paper, we focus on the wavefront sensing of segment phasing errors for a high-contrast system, using the COronagraphic Focal plane wave-Front Estimation for Exoplanet detection (COFFEE) technique. Methods. We implemented and tested COFFEE on the High-contrast imaging for Complex Aperture Telescopes (HiCAT) testbed, in a configuration without any coronagraph and with a classical Lyot coronagraph, to reconstruct errors applied on a 37 segment mirror. We analysed the quality and limitations of the reconstructions. Results. We demonstrate that COFFEE is able to estimate correctly the phasing errors of a segmented telescope for piston, tip, and tilt aberrations of typically 100 nm RMS. We also identified the limitations of COFFEE for the reconstruction of low-order wavefront modes, which are highly filtered by the coronagraph. This is illustrated using two focal plane mask sizes on HiCAT. We discuss possible solutions, both in the hardware system and in the COFFEE optimizer, to mitigate these issues.
机译:语境。从空间的地球状行星的直接成像需要专用的观察者,将大分段孔与仪器和技术相结合,如胰染性,波前传感器和波前控制,以达到所需的10〜(10)的高对比度。这些系统的复杂性将通过主镜的分割来增加,这允许图像类似地图所需的较大直径,而是由于瞳孔形状和分割并制造高对比度成像,还引入图像中的特定图案更具挑战性。在这些缺陷中,主镜的相位误差是对性能的强烈限制。目标。在本文中,我们专注于使用EXOPLALAGET检测(咖啡)技术的Coronagraphic焦平面波正面估计来对高对比度系统的段阶段误差的波前感。方法。我们在复杂孔径望远镜(HICAT)的高对比度成像上实施和测试了咖啡,其在没有任何核构型和典型的洛萝卜菌条的配置中测试过,以重建在37段镜子上施加的误差。我们分析了重建的质量和局限性。结果。我们证明咖啡能够正确估计用于活塞,尖端和通常100nm rms的分段望远镜的分段望远镜的相位误差。我们还确定了咖啡的重建,用于重建低阶波前模式,这是由菌根过滤的高级波前模式。这是使用Hicat上的两个焦平面掩模尺寸来说明的。我们讨论了在硬件系统和咖啡优化器中的可能解决方案,以减轻这些问题。

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