Astrometric planet search around southern ultracool dwarfs IV. Relative motion of the FORS2/VLT CCD chips
arXiv:1908.06056 · doi:10.1051/0004-6361/202557011
Abstract
We present an investigation of the stability of the two chips in the FORS2 camera CCD mosaic on the basis of astrometric observations of stars in 20 sky fields, some of which were monitored for four to seven years. We detected a smooth relative shear motion of the chips along their dividing line that is well approximated by a cubic function of time with an amplitude that reaches ~0.3 pixels (px) or ~38 mas over seven years. In a single case, we detected a step change of ~0.06 px that occurred within four days. In the orthogonal direction that corresponds to the separation between the chips, the motion is a factor of 5-10 smaller. This chip instability in the camera significantly reduces the astrometric precision when the reduction uses reference stars located in both chips, and the effect is not accounted for explicitly. We found that the instability introduces a bias in stellar positions with an amplitude that increases with the observation time span. When our reduction methods and FORS2 images are used, it affects stellar positions like an excess random noise with an RMS of ~0.5 mas for a time span of three to seven years when left uncorrected. We demonstrate that an additional calibration step can adequately mitigate this and restore an astrometric accuracy of 0.12 mas, which is essential to achieve the goals of our planet-search program. These results indicate that similar instabilities could critically affect the astrometric performance of other large ground-based telescopes and extremely large telescopes that are equipped with large-format multi-chip detectors if no precautions are taken.
11 pages, 14 figures, 3 tables, accepted for publication in A&A on August 8, 2019
References in corpus (25)
- The Gaia mission
- Gaia Data Release 3: Summary of the content and survey properties
- Gaia Early Data Release 3: The astrometric solution
- A new set of atmosphere and evolution models for cool T-Y brown dwarfs and giant exoplanets
- The Field Substellar Mass Function Based on the Full-sky 20-pc Census of 525 L, T, and Y Dwarfs
- CARMENES input catalogue of M dwarfs V. Luminosities, colours, and spectral energy distributions
- Discovery of new nearby L and late-M dwarfs at low Galactic latitude from the DENIS database
- A new equation of state for dense hydrogen-helium mixtures II: taking into account hydrogen-helium interactions
- Gaia DR3 detectability of unresolved binary systems
- Impact of a new H/He equation of state on the evolution of massive brown dwarfs. New determination of the hydrogen burning limit
- Detecting stars, galaxies, and asteroids with Gaia
- Gaia Data Release 3: Gaia scan-angle dependent signals and spurious periods
- Astrometric planet search around southern ultracool dwarfs I: First results, including parallaxes of 20 M8-L2 dwarfs
- Primeval very low-mass stars and brown dwarfs - VI. Population properties of metal-poor degenerate brown dwarfs
- The Mass-Activity relationships in M and K dwarfs. I. Stellar parameters of our sample of M and K dwarfs
- Lithium in LP 944-20
- Follow-up observations of binary ultra-cool dwarfs
- Ultracool dwarfs in Gaia DR3
- Astrometric planet search around southern ultracool dwarfs III. Discovery of a brown dwarf in a 3-year orbit around DE0630-18
- Astrometric planet search around southern ultracool dwarfs II: Astrometric reduction methods and a deep astrometric catalogue
- High-precision astrometry on the VLT/FORS1 at time scales of few days
- DE082349 is a juvenile binary brown dwarf at 20.7 pc
- Individual Dynamical Masses of DENIS J063001.4184014AB Reveal A Likely Young Brown Dwarf Triple
- Frequentist confidence intervals for orbits
- Detecting unresolved binary stars in Euclid VIS images