Chromatic Drift of the Espresso Fabry-Pérot Etalon
arXiv:2204.05713 · doi:10.1051/0004-6361/202243270
Abstract
In the last decade, white-light illuminated Fabry-Pérot interferometers wave been established as a widely used, relatively simple, reliable, and cost-effective way to precisely calibrate high-resolution echelle spectrographs. However, Terrien et al. (2021) recently reported a chromatic drift of the Fabry-Pérot interferometer installed at the Habitable-zone Planet Finder spectrograph. In particular, they found that the variation of the etalon effective gap size is not achromatic as usually assumed but in fact depends on wavelength. Here, we present a similar study of the Espresso Fabry-Pérot interferometer. Using daily calibrations spanning a period of over 2.5 years, we also find clear evidence for a chromatic drift with an amplitude of a few cm/s per day that has a characteristic, quasi-oscillatory dependence on wavelength. We conclude that this effect is probably caused by an aging of the dielectric mirror coatings and expect that similar chromatic drifts might affect all Fabry-Pérot interferometers used for calibration of astronomical spectrographs. However, we also demonstrate that the chromatic drift can be measured and in principle corrected using only standard calibrations based on hollow cathode lamp spectra.
8 pages, 3 figures; accepted for publication in A&A
References in corpus (7)
- Stellar Spectroscopy in the Near-infrared with a Laser Frequency Comb
- A 30 GHz electro-optic frequency comb spanning 300 THz in the near infrared and visible
- Fundamental physics with ESPRESSO: Precise limit on variations in the fine-structure constant towards the bright quasar HE 05154414
- Fundamental physics with Espresso: Towards an accurate wavelength calibration for a precision test of the fine-structure constant
- A new wavelength calibration for echelle spectrographs using Fabry-Perot etalons
- The SPIRou wavelength calibration for precise radial velocities in the near infrared
- Effect of near-field distribution on transmission characteristics of fiber-fed Fabry-Perot etalons