论文标题

用于直接成像系外行星I的冗余暂停:对段衍射极限之外的主镜面分割诱导的误差的鲁棒性

Redundant apodization for direct imaging of exoplanets I: Robustness to primary mirror segmentation-induced errors outside the segment diffraction limit

论文作者

Leboulleux, Lucie, Carlotti, Alexis, N'Diaye, Mamadou

论文摘要

地球状行星和年轻木星的直接成像和光谱需要在几十毫米秒的角度分离下最多10^6-10^10的对比度。为了实现这一目标,最有前途的方法之一是使用带有冠状器仪器的大型主镜望远镜。但是,冠状动脉对波前误差高度敏感。分割本身负责以亚纳米的准确性控制误差和分段振动。我们为冠状动脉设计提出了一种创新方法,该方法允许对低段计数镜的段相分化约束,并生成一种更强大的仪器,该仪器对节级级别的波前错误更为强大。它基于包括段级悬垂的冠状动脉的优化。这是在学生上重复的,以匹配分割冗余,并改善对比度稳定性,超过单段衍射极限设置的最小分离。我们在类似GMT的瞳孔上验证了两种冠状动脉类型的方法:Apodized Pupil Lyot Coronagraphs(APLC)和Apodizing Phate Choper Plate Coronagraphs(App)。对于APLC,与经典设计相比,冗余的插曲使释放活塞相相比5到20倍。对于该应用程序,对比度几乎保持恒定,最多可达1个径向误差的radian rms。我们还表明,冗余的插曲会增加冠状动脉对细分倾斜误差以及缺失段的鲁棒性。该方法不能应用于诸如ELT或TMT之类的高分子计数镜,但它特别适用于低段计镜(少于20个段),例如GMT孔径。这些镜子的目的是将碎屑盘或系外行星的高对比度成像降低至100 mas。

Direct imaging and spectroscopy of Earth-like planets and young Jupiters require contrasts up to 10^6-10^10 at angular separations of a few dozen milliarcseconds. To achieve this goal, one of the most promising approaches consists of using large segmented primary mirror telescopes with coronagraphic instruments. However, coronagraphs are highly sensitive to wavefront errors. The segmentation itself is responsible for phasing errors and segment vibrations to be controlled at a subnanometric accuracy. We propose an innovative method for a coronagraph design that allows a consequent relaxation of the segment phasing constraints for low segment-count mirrors and generates an instrument that is more robust to segment-level wavefront errors. It is based on an optimization of the coronagraph that includes a segment-level apodization. This is repeated over the pupil to match the segmentation redundancy and improves the contrast stability beyond the minimum separation set by the single-segment diffraction limit. We validate this method on a GMT-like pupil for two coronagraph types: apodized pupil Lyot coronagraphs (APLC) and apodizing phase plate coronagraphs (APP). For the APLC, redundant apodization enables releasing the piston phasing constraints by a factor of 5 to 20 compared to classical designs. For the APP, the contrast remains almost constant up to 1 radian RMS of the phasing errors. We also show that redundant apodizations increase the robustness of the coronagraph to segment tip-tilt errors, as well as to missing segments. This method cannot be applied to higher-segment count mirrors such as the ELT or the TMT, but it is particularly suitable for low segment-count mirrors (fewer than 20 segments) such as the GMT aperture. These mirrors aim for high-contrast imaging of debris disks or exoplanets down to 100 mas.

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