Towards characterising rocky worlds: Trends in chemical make-ups of M dwarfs versus GK dwarfs
arXiv:2407.01177 · doi:10.1051/0004-6361/202449467
Abstract
Elemental abundances of Sun-like stars are crucial for understanding the detailed properties of their planets. However, measuring elemental abundances in M stars is challenging due to their faintness and pervasive molecular features in optical spectra. To address this, elemental abundances of Sun-like stars have been proposed to constrain those of M stars by scaling [X/H] with measured [Fe/H]. This study tests the robustness of this practice using M- and GK-dwarf stellar abundances and rigorous statistical methods. We compile elemental abundances for 43 M dwarfs for 10 major rock-forming elements (Fe, C, O, Mg, Si, Al, Ca, Na, Ni, and Ti) from high-resolution near-infrared stellar surveys. We perform bootstrap-based linear regressions on the M dwarfs to determine the trends of [X/H] vs. [Fe/H] and compare them with GK dwarfs. A 2-sample, multivariate Mahalanobis Distance test is applied to assess the significance of differences in [X/H]--[Fe/H] trends for individual elemental pairs between M and GK dwarfs. The null hypothesis of no significant difference in chemical trends between M and GK dwarfs is strongly rejected for all elements except Si, for which rejection is marginal, and Na and Ni, for which results are inconclusive. This suggests that assuming no difference may lead to biased results and inaccurate constraints on rocky planets around M dwarfs. Therefore, it is crucial for both the stellar and exoplanet communities to recognise these differences. To better understand these differences, we advocate for dedicated modelling techniques for M dwarf atmospheres and more homogeneous abundance analyses. Our statistically constrained trends of [X/H]--[Fe/H] for M dwarfs offer a new constraint on estimating M-dwarf elemental abundances given measured [Fe/H], aiding in characterising the properties of M dwarf-hosted rocky worlds.
8 pages, 10 figures, 1 table in the main body; 6 appendices, with 13 figures and an open-access code. Accepted by A&A
References in corpus (21)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- The GALAH+ Survey: Third Data Release
- Gaia-ESO Survey: The analysis of high-resolution UVES spectra of FGK-type stars
- The 10 parsec sample in the Gaia era
- A JWST transmission spectrum of a nearby Earth-sized exoplanet
- SPECULOOS -- Ultracool Dwarf Transit Survey: Target List and Strategy
- The CARMENES search for exoplanets around M dwarfs. Guaranteed time observations Data Release 1 (2016-2020)
- Influence of sub- and super-solar metallicities on the compositions of solid planetary building blocks
- A Comparison of Stellar Elemental Abundance Techniques and Measurements
- Chemical Abundances of M-dwarfs from the APOGEE Survey. I. The Exoplanet Hosting Stars Kepler-138 and Kepler-186
- The Gaia-ESO Survey: homogenisation of stellar parameters and elemental abundances
- Detailed Chemical Abundances for a Benchmark Sample of M Dwarfs from the APOGEE Survey
- The Fifth Catalogue of Nearby Stars (CNS5)
- Plausible constraints on the range of bulk terrestrial exoplanet compositions in the Solar neighbourhood
- Elemental Abundances of M Dwarfs Based on High-Resolution Near-Infrared Spectra: Verification by Binary Systems
- Elemental abundances of nearby M dwarfs based on high-resolution near-infrared spectra obtained by the Subaru/IRD survey: Proof of concept
- Atomic diffusion and turbulent mixing in solar-like stars: Impact on the fundamental properties of FG-type stars
- Combined APOGEE-GALAH stellar catalogues using the Cannon
- Comparative high-resolution spectroscopy of M dwarfs -- exploring non-LTE effects
- Revisiting equilibrium condensation and rocky planet compositions: Introducing the ECCOplanets code