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Dynamical Viability Assessment for Habitable Worlds Observatory Targets

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arxiv 2408.00263 v1 pith:V2PLPCTY submitted 2024-08-01 astro-ph.EP astro-ph.IM

classification astro-ph.EPastro-ph.IM
keywords habitabledirectimagingknownplanetsstarssystemsystems
verification ladder T0 review T1 audit T2 compute T3 formal
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Exoplanetary science is increasingly prioritizing efforts toward direct imaging of planetary systems, with emphasis on those that may enable the detection and characterization of potentially habitable exoplanets. The recent 2020 Astronomy and Astrophysics decadal survey recommended the development of a space-based direct imaging mission that has subsequently been referred to as the Habitable Worlds Observatory (HWO). A fundamental challenge in the preparatory work for the HWO search for exo-Earths is the selection of suitable stellar targets. Much of the prior efforts regarding the HWO targets has occurred within the context of exoplanet surveys that have characterized the stellar properties for the nearest stars. The preliminary input catalog for HWO consists of 164 stars, of which 30 are known exoplanet hosts to 70 planets. Here, we provide a dynamical analysis for these 30 systems, injecting a terrestrial planet mass into the Habitable Zone (HZ) and determining the constraints on stable orbit locations due to the influence of the known planets. For each system, we calculate the percentage of the HZ that is dynamically viable for the potential presence of a terrestrial planet, providing an additional metric for inclusion of the stars within the HWO target list. Our analysis shows that, for 11 of the systems, less than 50% of the HZ is dynamically viable, primarily due to the presence of giant planets whose orbits pass near or through the HZ. These results demonstrate the impact that known system architectures can have on direct imaging target selection and overall system habitability.

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  1. Requirements for Joint Orbital Characterization of Cold Giants and Habitable Worlds with Habitable Worlds Observatory

    astro-ph.EP 2025-07 conditional novelty 6.0 of 10

    Simulations of 164 nearby target stars set HWO design requirements: an outer working angle of 1440 milliarcseconds, 40 precursor radial velocity measurements, and 6-8 astrometric epochs to pin down cold giant orbits.

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