Apodized pupil Lyot coronagraphs for arbitrary apertures. V. Hybrid Shaped Pupil designs for imaging Earth-like planets with future space observatories
Mamadou N'Diaye, R\'emi Soummer, Laurent Pueyo, Alexis, Carlotti, Christopher C. Stark, Marshall D. Perrin

TL;DR
This paper presents a novel hybrid apodized pupil Lyot coronagraph design optimized for segmented space telescope apertures, achieving high contrast necessary for direct imaging of Earth-like exoplanets.
Contribution
It introduces a new class of hybrid coronagraphs combining shaped pupil optimization with two-dimensional system design for arbitrary apertures, enabling high-contrast imaging of Earth twins.
Findings
Achieves $10^{10}$ contrast at 34 mas for 12m telescopes.
Can detect ~12.5 Earth-like planets around nearby stars in 5 years.
Compatible with existing mask technologies for segmented apertures.
Abstract
We introduce a new class of solutions for Apodized Pupil Lyot Coronagraphs (APLC) with segmented aperture telescopes to remove broadband diffracted light from a star with a contrast level of . These new coronagraphs provide a key advance to enabling direct imaging and spectroscopy of Earth twins with future large space missions. Building on shaped pupil (SP) apodization optimizations, our approach enables two-dimensional optimizations of the system to address any aperture features such as central obstruction, support structures or segment gaps. We illustrate the technique with a design that could reach contrast level at 34\,mas for a 12\,m segmented telescope over a 10\% bandpass centered at a wavelength 500\,nm. These designs can be optimized specifically for the presence of a resolved star, and in our example, for stellar angular size up to 1.1\,mas.…
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