Demographics of M Dwarf Binary Exoplanet Hosts Discovered by TESS

Fuente: arXiv
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Main Authors: Matson, Rachel A., Gore, Rebecca, Howell, Steve B., Ciardi, David R., Christiansen, Jessie L., Clark, Catherine A., Crossfield, Ian J. M., Fajardo-Acosta, Sergio B., Fernandes, Rachel B., Furlan, Elise, Gilbert, Emily A., Gonzales, Erica, Lester, Kathryn V., Lund, Michael B., Matthews, Elisabeth C., Polanski, Alex S., Schlieder, Joshua E., Ziegler, Carl
Format: Preprint
Published: 2024
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author Matson, Rachel A.
Gore, Rebecca
Howell, Steve B.
Ciardi, David R.
Christiansen, Jessie L.
Clark, Catherine A.
Crossfield, Ian J. M.
Fajardo-Acosta, Sergio B.
Fernandes, Rachel B.
Furlan, Elise
Gilbert, Emily A.
Gonzales, Erica
Lester, Kathryn V.
Lund, Michael B.
Matthews, Elisabeth C.
Polanski, Alex S.
Schlieder, Joshua E.
Ziegler, Carl
author_facet Matson, Rachel A.
Gore, Rebecca
Howell, Steve B.
Ciardi, David R.
Christiansen, Jessie L.
Clark, Catherine A.
Crossfield, Ian J. M.
Fajardo-Acosta, Sergio B.
Fernandes, Rachel B.
Furlan, Elise
Gilbert, Emily A.
Gonzales, Erica
Lester, Kathryn V.
Lund, Michael B.
Matthews, Elisabeth C.
Polanski, Alex S.
Schlieder, Joshua E.
Ziegler, Carl
contents M dwarfs have become increasingly important in the detection of exoplanets and the study of Earth-sized planets and their habitability. However, 20-30% of M dwarfs have companions that can impact the formation and evolution of planetary systems. We use high-resolution imaging and Gaia astrometry to detect stellar companions around M dwarf exoplanet hosts discovered by TESS and determine the projected separation and estimated stellar masses for each system. We find 47 companions around 216 M dwarfs and a multiplicity rate of $19.4\pm2.7$% that is consistent with field M dwarfs. The binary projected separation distribution is shifted to larger separations, confirming the lack of close binaries hosting transiting exoplanets seen in previous studies. We correct the radii of planets with nearby companions and examine the properties of planets in M dwarf multi-star systems. We also note three multi-planet systems that occur in close binaries ($\lesssim 50$ au) where planet formation is expected to be suppressed.
format Preprint
id arxiv_https___arxiv_org_abs_2412_08465
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Demographics of M Dwarf Binary Exoplanet Hosts Discovered by TESS
Matson, Rachel A.
Gore, Rebecca
Howell, Steve B.
Ciardi, David R.
Christiansen, Jessie L.
Clark, Catherine A.
Crossfield, Ian J. M.
Fajardo-Acosta, Sergio B.
Fernandes, Rachel B.
Furlan, Elise
Gilbert, Emily A.
Gonzales, Erica
Lester, Kathryn V.
Lund, Michael B.
Matthews, Elisabeth C.
Polanski, Alex S.
Schlieder, Joshua E.
Ziegler, Carl
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
M dwarfs have become increasingly important in the detection of exoplanets and the study of Earth-sized planets and their habitability. However, 20-30% of M dwarfs have companions that can impact the formation and evolution of planetary systems. We use high-resolution imaging and Gaia astrometry to detect stellar companions around M dwarf exoplanet hosts discovered by TESS and determine the projected separation and estimated stellar masses for each system. We find 47 companions around 216 M dwarfs and a multiplicity rate of $19.4\pm2.7$% that is consistent with field M dwarfs. The binary projected separation distribution is shifted to larger separations, confirming the lack of close binaries hosting transiting exoplanets seen in previous studies. We correct the radii of planets with nearby companions and examine the properties of planets in M dwarf multi-star systems. We also note three multi-planet systems that occur in close binaries ($\lesssim 50$ au) where planet formation is expected to be suppressed.
title Demographics of M Dwarf Binary Exoplanet Hosts Discovered by TESS
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2412.08465