科技报告详细信息
Apodized Pupil Lyot Coronagraphs Designs for Future Segmented Space Telescopes
StLaurent, Kathryn ; Fogarty, Kevin ; Zimmerman, Neil T ; N'Diaye, Mamadou ; Stark, Christopher C ; Mazoyer, Johan ; Sivaramakrishnan, Anand ; Pueyo, Laurent ; Shaklan, Stuart ; Vanderbei, Robert(Princeton Univ, Princeton, NJ, United States)
关键词: APERTURES;    APODIZATION;    ATMOSPHERIC COMPOSITION;    CORONAGRAPHS;    DESIGN ANALYSIS;    EXTRASOLAR PLANETS;    HIGH RESOLUTION;    MATHEMATICAL MODELS;    MISSION PLANNING;    PUPILS;    SOLAR OBSERVATORIES;    SPACEBORNE TELESCOPES;   
RP-ID  :  GSFC-E-DAA-TN66257
美国|英语
来源: NASA Technical Reports Server
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【 摘 要 】

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 eld. 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 robust-ness of APLC designs to fabrication and alignment errors. We also investigate the combination of APLC withwavefront control or complex focal plane masks to improve inner working angle and throughput. Preliminaryscientic yield evaluations based on design reference mission simulations indicate the APLC is a very competitiveconcept for surveying the local exoEarth population with a mission like LUVOIR.

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