HWO Target Stars and Systems: Activity and Rotation Catalog (ARC) of Potential Target Stars for the Habitable Worlds Observatory

Fuente: arXiv
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Main Authors: Fetherolf, Tara, Gupta, Arvind F., Newton, Elisabeth R., Buccino, Andrea P., Burt, Jennifer A., Caballero, Jose A., Carrazco-Gaxiola, Sebastian, Vieytes, Mariela C., Hinkel, Natalie R., Mamajek, Eric E.
Format: Preprint
Published: 2026
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author Fetherolf, Tara
Gupta, Arvind F.
Newton, Elisabeth R.
Buccino, Andrea P.
Burt, Jennifer A.
Caballero, Jose A.
Carrazco-Gaxiola, Sebastian
Vieytes, Mariela C.
Hinkel, Natalie R.
Mamajek, Eric E.
author_facet Fetherolf, Tara
Gupta, Arvind F.
Newton, Elisabeth R.
Buccino, Andrea P.
Burt, Jennifer A.
Caballero, Jose A.
Carrazco-Gaxiola, Sebastian
Vieytes, Mariela C.
Hinkel, Natalie R.
Mamajek, Eric E.
contents A major goal of the Habitable Worlds Observatory (HWO) is to precisely characterize exoplanets and their atmospheres. However, magnetic activity from an exoplanet's host star can complicate measurements of both the stellar and planetary properties, and stellar activity can be an important factor in our interpretation of the evolutionary history of an exoplanet. In this work, we assess the extent to which magnetic activity has been characterized for potential HWO target stars by collating archival measurements of relevant observables as published in a broad range of photometric and spectroscopic datasets. We describe our data collection strategy, provide an overview of currently known activity and rotation properties in the Activity and Rotation Catalog (ARC) for potential HWO target stars, and briefly review known relationships between stellar inclination, rotation, activity, and age. Overall, we find that stellar activity (S-index and R'HK) and rotation (v sin i and Prot) properties have been measured for at least 70% systems that are currently of high interest as potential HWO atmospheric characterization targets. However, stellar activity is temporal in nature, such that activity properties should be regularly monitored in order to remain up-to-date for informing future observations. In particular, we find that stellar activity cycles are measured for fewer than 20% of high interest potential HWO target stars. Measuring a star's activity cycle is critical for anticipating times when higher levels of magnetic activity may occur during planned HWO observations, which may interfere with measuring precise exoplanet atmospheric characteristics.
format Preprint
id arxiv_https___arxiv_org_abs_2605_22618
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle HWO Target Stars and Systems: Activity and Rotation Catalog (ARC) of Potential Target Stars for the Habitable Worlds Observatory
Fetherolf, Tara
Gupta, Arvind F.
Newton, Elisabeth R.
Buccino, Andrea P.
Burt, Jennifer A.
Caballero, Jose A.
Carrazco-Gaxiola, Sebastian
Vieytes, Mariela C.
Hinkel, Natalie R.
Mamajek, Eric E.
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
A major goal of the Habitable Worlds Observatory (HWO) is to precisely characterize exoplanets and their atmospheres. However, magnetic activity from an exoplanet's host star can complicate measurements of both the stellar and planetary properties, and stellar activity can be an important factor in our interpretation of the evolutionary history of an exoplanet. In this work, we assess the extent to which magnetic activity has been characterized for potential HWO target stars by collating archival measurements of relevant observables as published in a broad range of photometric and spectroscopic datasets. We describe our data collection strategy, provide an overview of currently known activity and rotation properties in the Activity and Rotation Catalog (ARC) for potential HWO target stars, and briefly review known relationships between stellar inclination, rotation, activity, and age. Overall, we find that stellar activity (S-index and R'HK) and rotation (v sin i and Prot) properties have been measured for at least 70% systems that are currently of high interest as potential HWO atmospheric characterization targets. However, stellar activity is temporal in nature, such that activity properties should be regularly monitored in order to remain up-to-date for informing future observations. In particular, we find that stellar activity cycles are measured for fewer than 20% of high interest potential HWO target stars. Measuring a star's activity cycle is critical for anticipating times when higher levels of magnetic activity may occur during planned HWO observations, which may interfere with measuring precise exoplanet atmospheric characteristics.
title HWO Target Stars and Systems: Activity and Rotation Catalog (ARC) of Potential Target Stars for the Habitable Worlds Observatory
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2605.22618