Convective blueshift strengths of 810 F to M solar-type stars
arXiv:2108.03859 · doi:10.1051/0004-6361/202039607
Abstract
The detection of Earth-mass exoplanets in the habitable zone around solar-mass stars using the radial velocity technique requires extremely high precision, on the order of 10cms, below the intrinsic variability of even relatively inactive stars, such as the Sun. One such variable is convective blueshift varying temporally, spatially, and between spectral lines. We develop a new approach for measuring convective blueshift and determine the strength of convective blueshift for 810 stars observed by the HARPS spectrograph, spanning spectral types late-F, G, K, and early-M. We derive a model for infering blueshift velocity for lines of any depth in later-type stars of any effective temperature. Using a custom list of spectral lines, covering a wide range of absorption depths, we create a model for the line-core shift as a function of line depth, commonly known as the third signature of granulation. We utilize an extremely-high-resolution solar spectrum (R1000000) to empirically account for the nonlinear nature of the third signature. The solar third signature is then scaled to all 810 stars. Through this we obtain a measure of the convective blueshift relative to the Sun as a function of stellar effective temperature. We confirm the general correlation of increasing convective blueshift with effective temperature and establish a tight, cubic relation between the two that strongly increases for stars above 5800K. For stars between 4100K and 4700K we show, for the first time, a plateau in convective shift and a possible onset of a plateau for stars above 6000K. Stars below 4000K show neither blueshift nor redshift. We provide a table that lists expected blueshift velocities for each spectral subtype in the data set to quickly access the intrinsic noise floor through convective blueshift for the radial velocity technique.
22 pages, 24 figures; accepted for publication in A&A
References in corpus (13)
- Spectrum radial velocity analyser (SERVAL). High-precision radial velocities and two alternative spectral indicators
- Stellar SEDs from 0.3-2.5 Microns: Tracing the Stellar Locus and Searching for Color Outliers in SDSS and 2MASS
- CERES: A Set of Automated Routines for Echelle Spectra
- Three years of Sun-as-a-star radial-velocity observations on the approach to solar minimum
- The amplitude of solar oscillations using stellar techniques
- Measuring precise radial velocities on individual spectral lines : II. Dependance of stellar activity signal on line depth
- Filtering solar-like oscillations for exoplanet detection in radial velocity observations
- 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 CARMENES search for exoplanets around M dwarfs: Convective shift and starspot constraints from chromatic radial velocities
- A new method of correcting radial velocity time series for inhomogeneous convection
- Testing the Spectroscopic Extraction of Suppression of Convective Blueshift
Cited by in corpus (10)
- Rotation Periods, Inclinations, and Obliquities of Cool Stars Hosting Directly Imaged Substellar Companions: Spin-Orbit Misalignments are Common
- Addressing Systematics in the Traceback Age of the Pictoris Moving Group
- SOAP-GPU: Efficient Spectral Modelling of Stellar Activity Using Graphical Processing Units
- Rotational modulation of spectroscopic Zeeman signatures in low-mass stars
- A Machine Learning approach for correcting radial velocities using physical observables
- Multi techniques approach to identify and/or constrain radial velocity sub-stellar companions
- The CARMENES search for exoplanets around M dwarfs. Line-by-line sensitivity to activity in M dwarfs
- Quiet Please: Detrending Radial Velocity Variations from Stellar Activity with a Physically Motivated Spot Model
- Convective blueshift strengths for 242 evolved stars
- DMPP-3: confirmation of short-period S-type planet(s) in a compact eccentric binary star system, and warnings about long-period RV planet detections