C3PO III: On the Lithium Signatures Following Planet Engulfment by Stars

Fuente: arXiv
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Hauptverfasser: Sun, Qinghui, Ting, Yuan-Sen, Liu, Fan, Wang, Sharon Xuesong, Anthony-Twarog, Barbara J., Twarog, Bruce A., Yang, Jia-Yi, Chen, Di-Chang, Karakas, Amanda I., Xie, Ji-Wei, Yong, David
Format: Preprint
Veröffentlicht: 2024
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author Sun, Qinghui
Ting, Yuan-Sen
Liu, Fan
Wang, Sharon Xuesong
Anthony-Twarog, Barbara J.
Twarog, Bruce A.
Yang, Jia-Yi
Chen, Di-Chang
Karakas, Amanda I.
Xie, Ji-Wei
Yong, David
author_facet Sun, Qinghui
Ting, Yuan-Sen
Liu, Fan
Wang, Sharon Xuesong
Anthony-Twarog, Barbara J.
Twarog, Bruce A.
Yang, Jia-Yi
Chen, Di-Chang
Karakas, Amanda I.
Xie, Ji-Wei
Yong, David
contents Planet engulfment has been identified as one of the mechanisms for enhancing lithium abundance in stars. However, comprehensive investigations into lithium signatures following such events remain limited. Stars born together, sharing a common origin and stellar characteristics, provide a unique opportunity to study these signatures and compare lithium abundances. We demonstrate that the distinctive signature of planet engulfment in lithium abundance is only discernible among highly similar stellar twins. We present lithium abundance measurements for 125 co-moving pairs of stars, representing the largest sample to date with a single, homogeneous assessment of high-precision lithium abundance. While lithium abundance enhancements in pairs showing planet engulfment signatures are within 0.35 dex, we find that even at fixed stellar parameters (temperature and age), the intrinsic scatter in lithium abundance is typically 0.35 dex for G/F dwarfs and can be as large as 0.6 dex for older and cooler stars due to internal stellar evolution processes. Since the planet engulfment signature from lithium can be masked by stellar intrinsic scatter, our findings raise questions about relying solely on lithium as an indicator for planet engulfment or attributing lithium-richness in stars primarily to planet engulfment events.
format Preprint
id arxiv_https___arxiv_org_abs_2410_20632
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle C3PO III: On the Lithium Signatures Following Planet Engulfment by Stars
Sun, Qinghui
Ting, Yuan-Sen
Liu, Fan
Wang, Sharon Xuesong
Anthony-Twarog, Barbara J.
Twarog, Bruce A.
Yang, Jia-Yi
Chen, Di-Chang
Karakas, Amanda I.
Xie, Ji-Wei
Yong, David
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Planet engulfment has been identified as one of the mechanisms for enhancing lithium abundance in stars. However, comprehensive investigations into lithium signatures following such events remain limited. Stars born together, sharing a common origin and stellar characteristics, provide a unique opportunity to study these signatures and compare lithium abundances. We demonstrate that the distinctive signature of planet engulfment in lithium abundance is only discernible among highly similar stellar twins. We present lithium abundance measurements for 125 co-moving pairs of stars, representing the largest sample to date with a single, homogeneous assessment of high-precision lithium abundance. While lithium abundance enhancements in pairs showing planet engulfment signatures are within 0.35 dex, we find that even at fixed stellar parameters (temperature and age), the intrinsic scatter in lithium abundance is typically 0.35 dex for G/F dwarfs and can be as large as 0.6 dex for older and cooler stars due to internal stellar evolution processes. Since the planet engulfment signature from lithium can be masked by stellar intrinsic scatter, our findings raise questions about relying solely on lithium as an indicator for planet engulfment or attributing lithium-richness in stars primarily to planet engulfment events.
title C3PO III: On the Lithium Signatures Following Planet Engulfment by Stars
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2410.20632