Observational evidence for a broken Li Spite plateau and mass-dependent Li depletion
arXiv:1005.2944 · doi:10.1051/0004-6361/200913047
Abstract
We present NLTE Li abundances for 88 stars in the metallicity range -3.5 < [Fe/H] < -1.0. The effective temperatures are based on the infrared flux method with improved E(B-V) values obtained mostly from interstellar NaI D lines. The Li abundances were derived through MARCS models and high-quality UVES+VLT, HIRES+Keck and FIES+NOT spectra, and complemented with reliable equivalent widths from the literature. The less-depleted stars with [Fe/H] < -2.5 and [Fe/H] > -2.5 fall into two well-defined plateaus of A_{Li} = 2.18 (sigma = 0.04) and A_{Li} = 2.27 (sigma = 0.05), respectively. We show that the two plateaus are flat, unlike previous claims for a steep monotonic decrease in Li abundances with decreasing metallicities. At all metallicities we uncover a fine-structure in the Li abundances of Spite plateau stars, which we trace to Li depletion that depends on both metallicity and mass. Models including atomic diffusion and turbulent mixing seem to reproduce the observed Li depletion assuming a primordial Li abundance A_{Li} = 2.64, which agrees well with current predictions (A_{Li} = 2.72) from standard Big Bang nucleosynthesis. Adopting the Kurucz overshooting model atmospheres increases the Li abundance by +0.08 dex to A_{Li} = 2.72, which perfectly agrees with BBN+WMAP.
A&A Letters, in press
References in corpus (13)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- An absolutely calibrated effective temperature scale from the InfraRed Flux Method
- Two distinct halo populations in the solar neighborhood. Evidence from stellar abundance ratios and kinematics
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- A Bitter Pill: The Primordial Lithium Problem Worsens
- A probable stellar solution to the cosmological lithium discrepancy
- First stars VII. Lithium in extremely metal poor dwarfs
- Chemical similarities between Galactic bulge and local thick disk red giants: O, Na, Mg, Al, Si, Ca and Ti
- Oxygen Abundances in Nearby Stars. Clues to the formation and evolution of the Galactic disk
- Accurate fundamental parameters for Lower Main Sequence Stars
- Lithium abundances of halo dwarfs based on excitation temperature. I. LTE
- First Stars XI. Chemical composition of the extremely metal-poor dwarfs in the binary CS 22876--032
Cited by in corpus (107)
- PARSEC: stellar tracks and isochrones with the PAdova and TRieste Stellar Evolution Code
- Challenges for CDM: An update
- Modified Newtonian Dynamics (MOND): Observational Phenomenology and Relativistic Extensions
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- One percent determination of the primordial deuterium abundance
- Near-Field Cosmology with Metal-Poor Stars
- The Primordial Lithium Problem
- Precision big bang nucleosynthesis with improved Helium-4 predictions
- Precision measures of the primordial abundance of deuterium
- Concurrent formation of supermassive stars and globular clusters: implications for early self-enrichment
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. IV. Two bulge populations
- The remarkable solar twin HIP 56948: a prime target in the quest for other Earths
- High-Resolution Spectroscopy of Extremely Metal-Poor Stars from SDSS/SEGUE: I. Atmospheric Parameters and Chemical Compositions
- HD 140283: A Star in the Solar Neighborhood that Formed Shortly After the Big Bang
- JINAbase: A database for chemical abundances of metal-poor stars
- The lithium isotopic ratio in very metal-poor stars
- The primordial deuterium abundance of the most metal-poor damped Lyman-alpha system
- Four-hundred Very Metal-Poor Stars Studied with LAMOST and Subaru. II. Elemental abundances
- Towards stellar effective temperatures and diameters at one per cent accuracy for future surveys
- The Chemical Abundances of Stars in the Halo (CASH) Project. II. A Sample of 16 Extremely Metal-poor Stars
- The PHLEK Survey: A New Determination of the Primordial Helium Abundance
- 3D NLTE spectral line formation of lithium in late-type stars
- Metal-Poor Stars Observed with the Magellan Telescope. III. New Extremely and Ultra Metal-Poor Stars from SDSS/SEGUE and Insights on the Formation of Ultra Metal-Poor Stars
- 3D NLTE analysis of the most iron-deficient star, SMSS0313-6708
- Non-LTE line formation of Fe in late-type stars IV: Modelling of the solar centre-to-limb variation in 3D
- Three Ancient Halo Subgiants: Precise Parallaxes, Compositions, Ages, and Implications for Globular Clusters
- Synthetic Stellar Photometry - II. Testing the bolometric flux scale, and tables of bolometric corrections for the Hipparcos/Tycho, Pan-STARRS1, SkyMapper and JWST systems
- Chemical Analysis of the Ninth Magnitude Carbon-Enhanced Metal-Poor Star BD+44 493
- Lithium abundances in CEMP stars
- Lithium-Rich Giants in Globular Clusters
- Metal-Poor Stars and the Chemical Enrichment of the Universe
- Beryllium and Alpha-Element Abundances in a Large Sample of Metal-Poor Stars
- Observation of interstellar lithium in the low-metallicity Small Magellanic Cloud
- Constraining cosmic scatter in the Galactic halo through a differential analysis of metal-poor stars
- Revisiting nucleosynthesis in globular clusters: the case of NGC 2808 and the role of He and K
- Gaia FGK Benchmark Stars: New Candidates At Low-Metallicities
- High-resolution spectroscopic studies of ultra metal-poor stars found in LAMOST survey
- Exploring the production and depletion of lithium in the Milky Way stellar disk
- Evolution of lithium in the Milky Way halo, discs and bulge
- Higher D or Li: Probes of Physics beyond the Standard Model
- Chemical Abundance Signature of J0023+0307 -- A Second-Generation Main-Sequence Star with [Fe/H]<-6
- Atomic diffusion and mixing in old stars VI: The lithium content of M30
- Modified big bang nucleosynthesis with non-standard neutron sources
- The value-added catalogue for LAMOST DR8 low-resolution spectra
- The Gaia -ESO Survey: Lithium enrichment histories of the Galactic thick and thin disc
- Red Giant evolution and specific problems
- High-resolution spectroscopy of extremely metal-poor stars from SDSS/SEGUE. III. Unevolved Stars with
- Two distinct halo populations in the solar neighborhood. IV. Lithium abundances
- Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies
- Lithium and Beryllium in the Gaia-Enceladus Galaxy
- A New Test of Copper and Zinc Abundances in Late-Type Stars Using Ultraviolet Cu II and Zn II Lines
- uvby- photometry of solar twins: the solar colors, model atmospheres, and the Teff and metallicity scales
- Observing the metal-poor solar neighbourhood: a comparison of galactic chemical evolution predictions
- Cosmic nucleosynthesis: a multi-messenger challenge
- Metallicity and age effects on lithium depletion in solar analogues
- Lithium in CEMP-no stars: A new constraint on the lithium depletion mechanism in the early universe
- Consistent Iron Abundances Derived from Neutral and Singly-Ionized Iron Lines in Ultraviolet and Optical Spectra of Six Warm Metal-Poor Stars
- The cosmological Lithium problem outside the Galaxy: the Sagittarius globular cluster M54
- Decaying dark matter, the tension, and the lithium problem
- Mirror matter can alleviate the cosmological lithium problem
- Examination of the mass-dependent Li depletion hypothesis by the Li abundances of the very metal-poor double-lined spectroscopic binary G166-45
- Star Formation Timescales of the Halo Populations from Asteroseismology and Chemical Abundances
- Constraints on the Distance Moduli, Helium and Metal Abundances, and Ages of Globular Clusters From Their RR Lyrae and Non-Variable Horizontal-Branch Stars. III. M55 and NGC 6362
- High Resolution Optical Spectroscopy of Stars in the Sylgr Stellar Stream
- The GALAH Survey: Accreted stars also inhabit the Spite Plateau
- Lithium depletion in solar analogs: age and mass effects
- Non-detection of Li in Spite plateau stars with ESPRESSO
- Lithium abundance in a turnoff halo star on an extreme orbit
- The first high precision differential abundance analysis of Extremely Metal Poor stars
- Non-Gaussian Error Distribution of Abundance Measurements
- Improving spectroscopic lithium abundances. Fitting functions for 3D non-LTE corrections in FGK stars of different metallicity
- Gaia-Sausage-Enceladus star formation history as revealed by detailed elemental abundances
- Population II stars and the Spite plateau; Stellar evolution models with mass loss
- Raising the observed metallicity floor with a 3D non-LTE analysis of SDSS J102915.14+172927.9
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. VII. Lithium
- The metal-poor end of the Spite plateau. II. Detailed chemical investigation
- A Critique of the Spite Plateau, and the Astration of Primordial Lithium
- The [Y/Mg] chemical clock in the Galactic Disk: The influence of metallicity and Galactic population in the solar neighbourhood
- Cosmic Chemical Evolution with an Early Population of Intermediate Mass Stars
- Search for Extremely Metal-Poor Stars with GEMINI-N/GRACES I. Chemical-Abundance Analysis
- The peculiar chemical abundance of the transitional millisecond pulsar PSR J1023+0038 -- Li enhancement
- On the Origin of Metal-poor Stars in the Solar Neighborhood
- Galactic Fly-Bys: New Source of Lithium Production
- Lithium in the lower red giant branch of 5 Galactic globular clusters
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. III. Detection of lithium in the metal-poor bulge dwarf MOA-2010-BLG-285S
- Protostellar accretion in low mass metal poor stars and the cosmological lithium problem
- A coherent view of Li depletion and angular momentum transport to explain the Li plateau -- from Population II to Population I stars
- Something borrowed, something blue: The nature of blue metal-poor stars inferred from their colours and chemical abundances
- Atomic diffusion and mixing in old stars VII. Abundances of Mg, Ti, and Fe in M30
- CD -24_17504 revisited: a new comprehensive element abundance analysis
- The ups and downs of inferred cosmological lithium
- Cosmological Solutions to the Lithium Problem
- Models for Metal-Poor Stars with Different Initial Abundances of C, N, O, Mg, and Si. III. Grids of Isochrones for [Fe/H] and Helium Abundances and at Each Metallicity
- Big-Bang Nucleosynthesis in comparison with observed helium and deuterium abundances - possibility of a non-standard model
- New Lithium Measurements in Metal-Poor Stars
- First Star Survivors as Metal-Rich Halo Stars that Experienced Supernova Explosions in Binary Systems
- Magnetic contributions in Bekenstein type models
- Fuzzy Cluster Analysis: Application to Determining Metallicities for Very Metal-poor Stars
- Non-Thermal Cosmic Rays During Big Bang Nucleosynthesis to Solve the Lithium Problem
- Effects of active-sterile neutrino mixing during primordial nucleosynthesis
- Possibility of chromospheric back-radiation influencing the lithium line formation in Spite plateau stars
- Calculation of primordial abundances of light nuclei including a heavy sterile neutrino
- Modelling the chemical evolution of the Milky Way
- The metal-poorest tail of the Galactic halo: hypothesis on its origin from precise spectral analysis
- Main-sequence Turnoff Stars as Probes of the Ancient Galactic Relic: Chemo-dynamical Analysis of a Pilot Sample
- Primordial helium-3 redux: The helium isotope ratio of the Orion nebula
- Gaia-Sausage-Enceladus: Lithium evolution from early red-giant-branch and main-sequence stars