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Journal article · Preprint article

Photon-weighted barycentric correction and its importance for precise radial velocities

From

Astrophysics and Atmospheric Physics, National Space Institute, Technical University of Denmark1

National Space Institute, Technical University of Denmark2

Pennsylvania State University3

Harvard-Smithsonian Center for Astrophysics4

Yale University5

When applying the barycentric correction to a precise radial velocity measurement, it is common practice to calculate its value only at the photon-weighted mid-point time of the observation instead of integrating over the entire exposure. However, since the barycentric correction does not change linearly with time, this leads to systematic errors in the derived radial velocities.

The typical magnitude of this second-order effect is of order 10 cm s−1, but it depends on several parameters, e.g. the latitude of the observatory, the position of the target on the sky, and the exposure time. We show that there are realistic observing scenarios, where the errors can amount to more than 1 m s−1.

We therefore recommend that instruments operating in this regime always record and store the exposure meter flux curve (or a similar measure) to be used as photon-weights for the barycentric correction. In existing data, if the flux curve is no longer available, we argue that second-order errors in the barycentric correction can be mitigated by adding a correction term assuming constant flux.

Language: English
Publisher: Oxford University Press (OUP)
Year: 2019
Pages: 2395-2402
ISSN: 13652966 and 00358711
Types: Journal article and Preprint article
DOI: 10.1093/mnras/stz2181
ORCIDs: Tronsgaard, René and Buchhave, Lars A.
Other keywords

astro-ph.EP astro-ph.IM

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