Separating planetary reflex Doppler shifts from stellar variability in the wavelength domain
Abstract
Stellar magnetic activity produces time-varying distortions in the photospheric line profiles of solar-type stars. These lead to systematic errors in high-precision radial-velocity measurements, which limit efforts to discover and measure the masses of low-mass exoplanets with orbital periods of more than a few tens of days. We present a new data-driven method for separating Doppler shifts of dynamical origin from apparent velocity variations arising from variability-induced changes in the stellar spectrum. We show that the autocorrelation function (ACF) of the cross-correlation function used to measure radial velocities is effectively invariant to translation. By projecting the radial velocities on to a subspace labelled by the observation identifiers and spanned by the amplitude coefficients of the ACF's principal components, we can isolate and subtract velocity perturbations caused by stellar magnetic activity. We test the method on a 5-year time sequence of 853 daily 15-minute observations of the solar spectrum from the HARPS-N instrument and solar-telescope feed on the 3.58-m Telescopio Nazionale Galileo. After removal of the activity signals, the heliocentric solar velocity residuals are found to be Gaussian and nearly uncorrelated. We inject synthetic low-mass planet signals with amplitude cm s into the solar observations at a wide range of orbital periods. Projection into the orthogonal complement of the ACF subspace isolates these signals effectively from solar activity signals. Their semi-amplitudes are recovered with a precision of cm s, opening the door to Doppler detection and characterization of terrestrial-mass planets around well-observed, bright main-sequence stars across a wide range of orbital periods.
Keywords
Cite
@article{arxiv.2011.00018,
title = {Separating planetary reflex Doppler shifts from stellar variability in the wavelength domain},
author = {A. Collier Cameron and E. B. Ford and S. Shahaf and S. Aigrain and X. Dumusque and R. D. Haywood and A. Mortier and D. F. Phillips and L. Buchhave and M. Cecconi and H. Cegla and R. Cosentino and M. Cretignier and A. Ghedina and M. Gonzalez and D. W. Latham and M. Lodi and M. Lopez-Morales and G. Micela and E. Molinari and F. Pepe and G. Piotto and E. Poretti and D. Queloz and J. San Juan and D. Segransan and A. Sozzetti and A. Szentgyorgyi and S. Thompson and S. Udry and C. Watson},
journal= {arXiv preprint arXiv:2011.00018},
year = {2021}
}
Comments
19 pages, 15 figures, accepted 2 May 2021 for publication in MNRAS