'Ultimate' Information Content in Solar and Stellar Spectra: Photospheric line asymmetries and wavelength shifts
arXiv:0810.2533 · doi:10.1051/0004-6361:200810481
Abstract
CONTEXT: Spectral-line asymmetries and wavelength shifts are signatures of hydrodynamics in solar and stellar atmospheres. Theory may precisely predict idealized lines, but observed spectra are limited by blends, too few suitable lines, imprecise laboratory wavelengths, and by instrumental imperfections. AIMS: Bisectors and shifts are extracted until the 'ultimate' accuracy limits in highest-quality solar and stellar spectra, to understand limits set by stellar physics, observational techniques, and limitations in laboratory data. METHODS: Spectral atlases of the Sun and bright solar-type stars were examined for thousands of 'unblended' lines with the most accurate laboratory wavelengths, yielding bisectors and shifts as averages over groups of similar lines, thus minimizing effects of photometric noise and of random blends. RESULTS: For solar spectra, bisector shapes and shifts were extracted for previously little-studied species (Fe II, Ti I, Ti II, Cr II, Ca I, C I), using recently determined very accurate laboratory wavelengths. In Procyon and other F-type stars, a blueward bend in the bisector near the spectral continuum reveals line saturation and damping wings in upward-moving photospheric granules. Accuracy limits set by 'astrophysical' noise, finite instrumental resolution, superposed telluric absorption, and inaccurate wavelengths, together limit absolute lineshift studies to approximately 50-100 m/s. CONCLUSIONS: Spectroscopy with resolutions R = 300,000 will enable bisector studies for many stars. Circumventing remaining limits of astrophysical noise in line-blends and rotationally smeared profiles may ultimately require spectroscopy across spatially resolved stellar disks.
15 pages, 11 figures, 6 tables; accepted for publication in Astronomy & Astrophysics
References in corpus (12)
- High-precision wavelength calibration of astronomical spectrographs with laser frequency combs
- A solar surface dynamo
- A new list of thorium and argon spectral lines in the visible
- Line shift, line asymmetry, and the 6Li/7Li isotopic ratio determination
- Strong horizontal photospheric magnetic field in a surface dynamo simulation
- The origin of the reversed granulation in the solar photosphere
- Selection of ThAr lines for wavelength calibration of echelle spectra and implications for variations in the fine-structure constant
- UVES radial velocity accuracy from asteroid observations. Implications for the fine structure constant variability
- Towards More Precise Survey Photometry for PanSTARRS and LSST: Measuring Directly the Optical Transmission Spectrum of the Atmosphere
- Formation of MnI lines in the solar atmosphere
- Disentangling telluric lines in stellar spectra
- High-resolution models of solar granulation: the 2D case
Cited by in corpus (18)
- Variability of stellar granulation and convective blueshift with spectral type and magnetic activity. I. K and G main sequence stars
- Stellar Surface Magneto-Convection as a Source of Astrophysical Noise III. Sun-as-a-star Simulations and Optimal Noise Diagnostics
- Variability in stellar granulation and convective blueshift with spectral type and magnetic activity. II. From young to old main-sequence K-G-F stars
- The Impact of Stellar Surface Magnetoconvection and Oscillations on the Detection of Temperate, Earth-Mass Planets Around Sun-Like Stars
- Spatially resolved spectroscopy across stellar surfaces. I. Using exoplanet transits to analyze 3-D stellar atmospheres
- Granulation in K-type Dwarf Stars. I. Spectroscopic observations
- Spatially resolved spectroscopy across stellar surfaces. II. High-resolution spectra across HD209458 (G0V)
- Spatially resolved spectroscopy across stellar surfaces. V. Observational prospects: Toward Earth-like exoplanet detection
- A limit on variations in the fine-structure constant from spectra of nearby Sun-like stars
- Spatially resolved spectroscopy across stellar surfaces. IV. F, G, & K-stars: Synthetic 3D spectra at hyper-high resolution
- Improving Earth-like planet detection in radial velocity using deep learning
- The relationship between photometric and spectroscopic oscillation amplitudes from 3D stellar atmosphere simulations
- Probing Galactic variations in the fine-structure constant using solar twin stars: systematic errors
- Probing Galactic variations in the fine-structure constant using solar twin stars: methodology and results
- Convective Line Shifts in the Spectra of Solar-Type Stars
- Solar Flux Atlases: The new HARPS-N Quiet Sun Benchmark and Ca II H & K Lines Continuum Normalisation
- Towards understanding stellar variability at the sub m/s level: granulation-induced variability across the optical spectrum
- Asymmetry of Lines in the Spectra of the Sun and Solar-Type Stars