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High-Contrast Coronagraphy

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arxiv 2506.02907 v1 pith:PXIWEKNK submitted 2025-06-03 astro-ph.IM

High-Contrast Coronagraphy

classification astro-ph.IM
keywords aroundhigh-contrastimagingstarscontrastscoronagraphsnearbytelescopes
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Imaging terrestrial exoplanets around nearby stars is a formidable technical challenge, requiring the development of coronagraphs to suppress the stellar halo of diffracted light at the location of the planet. In this review, we derive the science requirement for high-contrast imaging, present an overview of diffraction theory and the Lyot coronagraph, and define the parameters used in our optimization. We detail the working principles of coronagraphs both in the laboratory and on-sky with current high-contrast instruments, and we describe the required algorithms and processes necessary for terrestrial planet imaging with the extremely large telescopes and proposed space telescope missions: * Imaging terrestrial planets around nearby stars is possible with a combination of coronagraphs and active wavefront control using feedback from wavefront sensors. * Ground based 8-40m class telescopes can target the habitable zone around nearby M dwarf stars with contrasts of $10^{-7}$ and space telescopes can search around solar-type stars with contrasts of $10^{-10}$. * Focal plane wavefront sensing, hybrid coronagraph designs and multiple closed loops providing active correction are required to reach the highest sensitivities. * Polarization effects need to be mitigated for reaching $10^{-10}$ contrasts whilst keeping exoplanet yields as high as possible. * Recent technological developments, including photonics and microwave kinetic inductance detectors, will be folded into high-contrast instruments.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Direct Detection of Known Exoplanets in Reflected Light: Predicting Sky Position with Literature Orbit Solutions

    astro-ph.EP 2025-09 conditional novelty 6.0

    A new open-source code, projecc, predicts where known RV and astrometric planets will appear on the sky, revealing that GJ 876 b is well positioned but Proxima Centauri b's location is too uncertain to plan cued observations.

  2. Demonstrating Improved Contrast on the Roman Coronagraph with Spatial Linear Dark Field Control

    astro-ph.IM 2025-09 unverdicted novelty 5.0

    Proposes applying sLDFC to the Roman Coronagraph to maintain darker, more stable dark holes and use bright-field signals to boost exoplanet detection limits.