Accounting for Chromatic Atmospheric Effects on Barycentric Corrections
arXiv:1703.00012 · doi:10.3847/1538-4357/aa5ead
Abstract
Atmospheric effects on stellar radial velocity measurements for exoplanet discovery and characterization have not yet been fully investigated for extreme precision levels. We carry out calculations to determine the wavelength dependence of barycentric corrections across optical wavelengths, due to the ubiquitous variations in air mass during observations. We demonstrate that radial velocity errors of at least several cm/s can be incurred if the wavelength dependence is not included in the photon-weighted barycentric corrections. A minimum of four wavelength channels across optical spectra (380-680 nm) are required to account for this effect at the 10 cm/s level, with polynomial fits of the barycentric corrections applied to cover all wavelengths. Additional channels may be required in poor observing conditions or to avoid strong telluric absorption features. Furthermore, consistent flux sampling on the order of seconds throughout the observation is necessary to ensure that accurate photon weights are obtained. Finally, we describe how a multiple-channel exposure meter will be implemented in the EXtreme PREcision Spectrograph (EXPRES).
7 pages, 5 figures, accepted for publication in ApJ
References in corpus (4)
- Barycentric Corrections at 1 cm/s for precise Doppler velocities
- A comprehensive radial velocity error budget for next generation Doppler spectrometers
- Towards More Precise Survey Photometry for PanSTARRS and LSST: Measuring Directly the Optical Transmission Spectrum of the Atmosphere
- Calibration of the Relationship between Precipitable Water Vapor and 225 GHz Atmospheric Opacity via Optical Echelle Spectroscopy at Las Campanas Observatory
Cited by in corpus (4)
- The EXPRES Stellar Signals Project II. State of the Field in Disentangling Photospheric Velocities
- EXPRES I. HD~3651 an Ideal RV Benchmark
- The Measured Impact of Chromatic Atmospheric Effects on Barycentric Corrections: Results from the EXtreme PREcision Spectrograph
- Data Reduction Pipeline of the TOU Optical Very High Resolution Spectrograph and Its sub-m/s Performance