Apache Point Observatory follow-up of ACcelerating Candidate ExopLanet host Stars (APO ACCELS): Ages for 166 Accelerating Stars in the Northern Hemisphere

Fuente: arXiv
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Auteurs principaux: Peck, Anne E., Nielsen, Eric L., De Rosa, Robert J., Thompson, William, Macintosh, Bruce, Roberson, William, Smith, Adam J. R. W., Klusmeyer, Jessica, Abbas, Asif, Jackiewicz, Jason, Holtzman, Jon, Gallamore, Hannah, Brinjikji, Marah, Patience, Jennifer, Nguyen, Jayke, Madurowicz, Alex, Savransky, Dmitry
Format: Preprint
Publié: 2025
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author Peck, Anne E.
Nielsen, Eric L.
De Rosa, Robert J.
Thompson, William
Macintosh, Bruce
Roberson, William
Smith, Adam J. R. W.
Klusmeyer, Jessica
Abbas, Asif
Jackiewicz, Jason
Holtzman, Jon
Gallamore, Hannah
Brinjikji, Marah
Patience, Jennifer
Nguyen, Jayke
Madurowicz, Alex
Savransky, Dmitry
author_facet Peck, Anne E.
Nielsen, Eric L.
De Rosa, Robert J.
Thompson, William
Macintosh, Bruce
Roberson, William
Smith, Adam J. R. W.
Klusmeyer, Jessica
Abbas, Asif
Jackiewicz, Jason
Holtzman, Jon
Gallamore, Hannah
Brinjikji, Marah
Patience, Jennifer
Nguyen, Jayke
Madurowicz, Alex
Savransky, Dmitry
contents Directly imaged substellar companions with well-constrained ages and masses serve as vital empirical benchmarks for planet formation and evolution models. Potential benchmark companions can be identified from astrometric accelerations of their host stars. We use Gaia DR3 and Hipparcos astrometry to identify 166 northern hemisphere stars with astrometric accelerations consistent with a substellar companion between 0.5'' and 1''. For this accelerating sample we identify young stars using APO/ARCES spectra and TESS light curves. From spectroscopic screening of the sample, we measure ages for 24 stars with detectable amounts of lithium, place lower age limits on 135 stars with lithium non-detections, and measure ages from R'HK for 34 stars. 129 stars have TESS light curves from which we measure ages for 20 stars with rotation rates < 15 days, and we identify 3 eclipsing binaries. We present median ages and confidence intervals of age posteriors for the entire sample and discuss how the overall age distribution of our sample compares to a uniform star formation rate in the solar neighborhood. We identify 47 stars with median ages < 2 Gyr, 31 stars with median ages < 1 Gyr, and 14 stars with median ages < 0.5 Gyr, making them high-priority targets for direct imaging follow-up.
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institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Apache Point Observatory follow-up of ACcelerating Candidate ExopLanet host Stars (APO ACCELS): Ages for 166 Accelerating Stars in the Northern Hemisphere
Peck, Anne E.
Nielsen, Eric L.
De Rosa, Robert J.
Thompson, William
Macintosh, Bruce
Roberson, William
Smith, Adam J. R. W.
Klusmeyer, Jessica
Abbas, Asif
Jackiewicz, Jason
Holtzman, Jon
Gallamore, Hannah
Brinjikji, Marah
Patience, Jennifer
Nguyen, Jayke
Madurowicz, Alex
Savransky, Dmitry
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Astrophysics of Galaxies
Directly imaged substellar companions with well-constrained ages and masses serve as vital empirical benchmarks for planet formation and evolution models. Potential benchmark companions can be identified from astrometric accelerations of their host stars. We use Gaia DR3 and Hipparcos astrometry to identify 166 northern hemisphere stars with astrometric accelerations consistent with a substellar companion between 0.5'' and 1''. For this accelerating sample we identify young stars using APO/ARCES spectra and TESS light curves. From spectroscopic screening of the sample, we measure ages for 24 stars with detectable amounts of lithium, place lower age limits on 135 stars with lithium non-detections, and measure ages from R'HK for 34 stars. 129 stars have TESS light curves from which we measure ages for 20 stars with rotation rates < 15 days, and we identify 3 eclipsing binaries. We present median ages and confidence intervals of age posteriors for the entire sample and discuss how the overall age distribution of our sample compares to a uniform star formation rate in the solar neighborhood. We identify 47 stars with median ages < 2 Gyr, 31 stars with median ages < 1 Gyr, and 14 stars with median ages < 0.5 Gyr, making them high-priority targets for direct imaging follow-up.
title Apache Point Observatory follow-up of ACcelerating Candidate ExopLanet host Stars (APO ACCELS): Ages for 166 Accelerating Stars in the Northern Hemisphere
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2506.21755