Stellar Chemical Abundances: In Pursuit of the Highest Achievable Precision
arXiv:1409.1230 · doi:10.1088/0004-637X/795/1/23
Abstract
The achievable level of precision on photospheric abundances of stars is a major limiting factor on investigations of exoplanet host star characteristics, the chemical histories of star clusters, and the evolution of the Milky Way and other galaxies. While model-induced errors can be minimized through the differential analysis of spectrally similar stars, the maximum achievable precision of this technique has been debated. As a test, we derive differential abundances of 19 elements from high-quality asteroid-reflected solar spectra taken using a variety of instruments and conditions. We treat the solar spectra as being from unknown stars and use the resulting differential abundances, which are expected to be zero, as a diagnostic of the error in our measurements. Our results indicate that the relative resolution of the target and reference spectra is a major consideration, with use of different instruments to obtain the two spectra leading to errors up to 0.04 dex. Use of the same instrument at different epochs for the two spectra has a much smaller effect (~0.007 dex). The asteroid used to obtain the solar standard also has a negligible effect (~0.006 dex). Assuming that systematic errors from the stellar model atmospheres have been minimized, as in the case of solar twins, we confirm that differential chemical abundances can be obtained at sub-0.01 dex precision with due care in the observations, data reduction and abundance analysis.
Accepted for publication in ApJ; 13 pages, 6 figures, 7 tables
References in corpus (7)
- A new code for automatic determination of equivalent widths: Automatic Routine for line Equivalent widths in stellar Spectra (ARES)
- 18 Sco: a solar twin rich in refractory and neutron-capture elements. Implications for chemical tagging
- C/O Ratios of Stars with Transiting Hot Jupiter Exoplanets
- Carbon and Oxygen in Nearby Stars: Keys to Protoplanetary Disk Chemistry
- High precision abundances in the 16 Cyg binary system: a signature of the rocky core in the giant planet
- Elemental Abundances of Solar Sibling Candidates
- HIP 114328: a new refractory-poor and Li-poor solar twin
Cited by in corpus (49)
- High-precision abundances of elements in solar twin stars: Trends with stellar age and elemental condensation temperature
- The origin and evolution of the odd-Z iron-peak elements Sc, V, Mn, and Co in the Milky Way stellar disk
- The temporal evolution of neutron-capture elements in the Galactic discs
- Solar oxygen abundance
- The Gaia-ESO survey: the non-universality of the age-chemical-clocks-metallicity relations in the Galactic disc
- High-precision abundances of elements in Kepler LEGACY stars. Verification of trends with stellar age
- Temperatures and Metallicities of M dwarfs in the APOGEE Survey
- How magnetic activity alters what we learn from stellar spectra
- The Li-age correlation: the Sun is unusually Li deficient for its age
- Signatures of rocky planet engulfment in HAT-P-4. Implications for chemical tagging studies
- Chemical evidence for planetary ingestion in a quarter of Sun-like stars
- The effect of stellar activity on the spectroscopic stellar parameters of the young solar twin HIP 36515
- The Solar Twin Planet Search. V. Close-in, low-mass planet candidates and evidence of planet accretion in the solar twin HIP 68468
- Do Metal-Rich Stars Make Metal-Rich Planets? New Insights on Giant Planet Formation from Host Star Abundances
- Detailed chemical compositions of planet hosting stars: I. Exploration of possible planet signatures
- Planet Engulfment Detections are Rare According to Observations and Stellar Modeling
- Metallicity and age effects on lithium depletion in solar analogues
- Spectroscopic study of solar twins and analogues
- High-precision analysis of binary stars with planets. I. Searching for condensation temperature trends in the HD 106515 system
- Lithium depletion in solar analogs: age and mass effects
- Searching for new solar twins: The Inti survey for the Northern Sky
- Spectroscopic binaries in the Solar Twin Planet Search program: from substellar-mass to M dwarf companions
- Forecasting Chemical Abundance Precision for Extragalactic Stellar Archaeology
- Quest for finding the lost siblings of the Sun
- Testing abundance-age relations beyond solar analogues with Kepler LEGACY stars
- Water content trends in K2-138 and other low-mass multiplanetary systems
- Statistics of the Chemical Composition of Solar Analog Stars and Links to Planet Formation
- The [Y/Mg] chemical clock in the Galactic Disk: The influence of metallicity and Galactic population in the solar neighbourhood
- Li abundances for solar twins in the open cluster M67
- The peculiar chemical pattern of the WASP-160 binary system: signatures of planetary formation and evolution?
- Europium as a lodestar: diagnosis of radiogenic heat production in terrestrial exoplanets
- Revisiting equilibrium condensation and rocky planet compositions: Introducing the ECCOplanets code
- Disentangling the origin of chemical differences using GHOST
- TOI-1736 and TOI-2141: two systems including sub-Neptunes around solar analogs revealed by TESS and SOPHIE
- A New Age-Activity Relation For Solar Analogs that Accounts for Metallicity
- Investigating three Sirius-like systems with SPHERE
- Predictions for Complex Distributions of Stellar Elemental Abundances in Low-Mass Galaxies
- The peculiar composition of the Sun is not related to giant planets
- Validating Stellar Abundance Measurements from Multi-Resolution Spectroscopy
- Automatic line selection for abundance determination in large stellar spectroscopic surveys
- Gemini-GRACES high-quality spectra of Kepler evolved stars with transiting planets I. Detailed characterization of multi-planet systems Kepler-278 and Kepler-391
- A comprehensive study of the relations between the properties of planetary systems and the chemical compositions of their host stars
- Elemental Abundances of Kepler Objects of Interest in APOGEE DR17
- Benchmark stars, benchmark spectrographs: Detailed spectroscopic comparison of ESPRESSO, PEPSI, and HARPS data for Gaia benchmark stars
- Solar twins in Gaia DR3 GSP-Spec I. Building a large catalog of Solar twins with ages
- iota Horologii is unlikely to be an evaporated Hyades star
- Differential abundance analysis of Procyon and Theta Sculptoris: Comparison with abundance patterns of solar-like pairs
- Beryllium: The smoking gun of a rejuvenated star
- Playing CHESS with stars. I. Search for similar stars in large spectroscopic data sets