The ESPRI project: astrometric exoplanet search with PRIMA I. Instrument description and performance of first light observations
J. Sahlmann, T. Henning, D. Queloz, A. Quirrenbach, N.M. Elias II, R., Launhardt, F. Pepe, S. Reffert, D. Segransan, J. Setiawan, R. Abuter, L., Andolfato, P. Bizenberger, H. Baumeister, B. Chazelas, F. Delplancke, F., Derie, N. Di Lieto, T.P. Duc, M. Fleury, U. Graser

TL;DR
The ESPRI project utilizes the PRIMA interferometer at the VLT to perform high-precision astrometry for exoplanet detection, with initial tests showing promising precision but requiring improvements for accuracy.
Contribution
This paper describes the instrument's design, implementation, and initial performance results, highlighting the first light observations and systematic error analysis.
Findings
Achieved 30 micro-arcsecond precision in astrometry.
Systematic errors limit the current accuracy of measurements.
Identified corrective actions to improve the instrument's performance.
Abstract
The ESPRI project relies on the astrometric capabilities offered by the PRIMA facility of the Very Large Telescope Interferometer for the discovery and study of planetary systems. Our survey consists of obtaining high-precision astrometry for a large sample of stars over several years and to detect their barycentric motions due to orbiting planets. We present the operation principle, the instrument's implementation, and the results of a first series of test observations. A comprehensive overview of the instrument infrastructure is given and the observation strategy for dual-field relative astrometry is presented. The differential delay lines, a key component of the PRIMA facility which was delivered by the ESPRI consortium, are described and their performance within the facility is discussed. Observations of bright visual binaries are used to test the observation procedures and to…
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Taxonomy
TopicsAdaptive optics and wavefront sensing · Stellar, planetary, and galactic studies · Astronomy and Astrophysical Research
