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Apodized Pupil Lyot Coronagraphs designs for future segmented space telescopes

机译:用于未来分段空间望远镜的切趾瞳Lyot日冕仪设计

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A coronagraphic starlight suppression system situated on a future flagship space observatory offers a promising avenue to image Earth-like exoplanets and search for biomarkers in their atmospheric spectra. One NASA mission concept that could serve as the platform to realize this scientific breakthrough is the Large UV/Optical/IR Surveyor (LUVOIR). Such a mission would also address a broad range of topics in astrophysics with a multi-wavelength suite of instruments. The apodized pupil Lyot coronagraph (APLC) is one of several coronagraph design families that the community is assessing as part of NASAs Exoplanet Exploration Program Segmented aperture coronagraph design and analysis (SCDA) team. The APLC is a Lyot-style coronagraph that suppresses starlight through a series of amplitude operations on the on-axis field. Given a suite of seven plausible segmented telescope apertures, we have developed an object-oriented software toolkit to automate the exploration of thousands of APLC design parameter combinations. This has enabled us to empirically establish relationships between planet throughput and telescope aperture geometry, inner working angle, bandwidth, and contrast level. In parallel with the parameter space exploration, we have investigated several strategies to improve the robustness of APLC designs to fabrication and alignment errors. We also investigate the combination of APLC with wavefront control or complex focal plane masks to improve inner working angle and throughput. Preliminary scientific yield evaluations based on design reference mission simulations indicate the APLC is a very competitive concept for surveying the local cxoEarth population with a mission like LUVOIR.
机译:位于未来旗舰空间天文台上的日冕星光抑制系统提供了一种有前途的途径,可以对类似地球的系外行星进行成像,并在其大气光谱中寻找生物标记。可以用作实现这一科学突破的平台的一个NASA任务概念是大型UV /光学/ IR测量员(LUVOIR)。这样的任务还将利用多波长仪器套件解决天体物理学中的广泛主题。变迹的瞳孔Lyot日冕仪(APLC)是社区正在评估的几个日冕仪设计系列之一,这是NASA系外行星探索计划分段孔径日冕仪设计和分析(SCDA)团队的一部分。 APLC是一种Lyot型日冕仪,可通过在同轴磁场上进行一系列振幅操作来抑制星光。给定一套七个可能的分段望远镜孔径,我们已经开发了一个面向对象的软件工具包,可以自动探索数千种APLC设计参数组合。这使我们能够凭经验建立行星吞吐量与望远镜孔径几何形状,内部工作角度,带宽和对比度水平之间的关系。在参数空间探索的同时,我们研究了几种提高APLC设计对制造和对准误差的鲁棒性的策略。我们还研究了APLC与波前控制或复杂焦平面掩模的组合,以改善内部工作角度和吞吐量。根据设计参考任务模拟进行的初步科学产量评估表明,APLC对于像LUVOIR这样的任务进行调查本地尾土种群是一个非常有竞争力的概念。

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