Following the Lithium: Tracing Li-bearing Molecules Across Age, Mass, and Gravity in Brown Dwarfs
arXiv:2106.00781 · doi:10.3847/1538-4357/ac0a7d
Abstract
Lithium is an important element for the understanding of ultracool dwarfs because it is lost to fusion at masses above . Hence, the presence or absence of atomic Li has served as an indicator of the nearby H-burning boundary at about between brown-dwarfs and very low-mass stars. Historically the "Lithium test", a search for the presence and strength of the Li line at 670.8 nm, has been a marker if an object has a substellar mass with stellar-like spectral energy distribution (e.g., a late-type M dwarf). While the Li test could in principle also be used to distinguish masses of later-type L-T dwarfs, Li is predominantly no longer found as an atomic gas, but rather a molecular species such as LiH, LiF, LiOH, and LiCl in their cooler atmospheres. L- and T-type brown dwarfs are also quite faint at 670 nm and thus challenging targets for high resolution spectroscopy. But only recently have experimental molecular line lists become available for the molecular Li species, allowing molecular Li mass discrimination. In this study, we generated the latest opacity of each of these Li-bearing molecules and performed thermochemical equilibrium atmospheric composition calculation of the abundance of these molecules. Finally, we computed thermal emission spectra for a series of radiative-convective equilibrium models of cloudy and cloudless brown dwarf atmospheres (with 500--2400~K, and =4.0, 4.5, 5.0) to understand where the presence or absence of atmospheric lithium-bearing species is most easily detected as a function of brown dwarf mass and age. After atomic Li, the best spectral signatures were found to be LiF at ~\micron and LiCl at $\micron$. LiH also shows a narrow feature at $\micron$.
13 pages, 7 figures, 1 table, In final revision at ApJ. Comments welcome
References in corpus (8)
- The Evolution of L and T Dwarfs in Color-Magnitude Diagrams
- A Sample of Very Young Field L Dwarfs and Implications for the Brown Dwarf "Lithium Test" at Early Ages
- Exoplanet Reflected Light Spectroscopy with PICASO
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- EXOPLINES: Molecular Absorption Cross-Section Database for Brown Dwarf and Giant Exoplanet Atmospheres
- Lithium in LP 944-20
- Orbital and spectral characterization of the benchmark T-type brown dwarf HD 19467B
- Astrometric orbits of spectral binary brown dwarfs I: Massive T dwarf companions to 2M105921 and 2M080548
Cited by in corpus (7)
- The Sonora Substellar Atmosphere Models. IV. Elf Owl: Atmospheric Mixing and Chemical Disequilibrium with Varying Metallicity and C/O Ratios
- Astrometric Accelerations as Dynamical Beacons: Discovery and Characterization of HIP 21152 B, the First T-Dwarf Companion in the Hyades
- Dynamical Mass of the Young Substellar Companion HD 984 B
- The impact of spectral line wing cut-off: Recommended standard method with application to MAESTRO opacity database
- Measurement of stellar and substellar winds using white dwarf hosts
- Diversity of Cold Worlds: A Near Complete Spectral Energy Distribution for 2MASS J04151954-0935066 using JWST
- The Sonora Brown Dwarf Atmosphere and Evolution Models I. Model Description and Application to Cloudless Atmospheres in Rainout Chemical Equilibrium