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Effects of Diffraction and Static Wavefront Errors on High-Contrast Imaging from the Thirty Meter Telescope

机译:衍射和静态波前误差对三十米望远镜高对比度成像的影响

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High-contrast imaging, particularly direct detection of extrasolar planets, is a major science driver for the next generation of extremely large telescopes such as the segmented Thirty Meter Telescope. This goal requires more than merely diffraction-limited imaging, but also attention to residual scattered light from wavefront errors and diffraction effects at the contrast level of 10~(-8)-10~(-9). Using a wave-optics simulation of adaptive optics and a diffraction suppression system we investigate diffraction from the segmentation geometry, intersegment gaps, obscuration by the secondary mirror and its supports. We find that the large obscurations pose a greater challenge than the much smaller segment gaps. In addition the impact of wavefront errors from the primary mirror, including segment alignment and figure errors, are analyzed. Segment-to-segment reflectivity variations and residual segment figure error will be the dominant error contributors from the primary mirror. Strategies to mitigate these errors are discussed.
机译:高对比度成像,特别是直接检测郊区的行星,是下一代极大的望远镜等主要的科学驱动器,例如分段的三十米望远镜。该目标需要不仅仅是仅仅衍射限制的成像,还需要注意与波前误差和衍射效应的剩余散射光,对比度为10〜(-8)-10〜(-9)。使用自适应光学和衍射抑制系统的波光光学仿真,我们研究了从分割几何形状,偏差差距,由二次镜子遮蔽的衍射及其支撑。我们发现大型晦涩突出了比较小的段差距更大的挑战。此外,分析了来自主镜的波前误差的影响,包括段对齐和图形错误。分段对段反射率变化和剩余段图错误将是来自主镜像的主要错误贡献者。讨论了减轻这些错误的策略。

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