Precision and consistency of astrocombs
arXiv:2002.05182 · doi:10.1093/mnras/staa356
Abstract
Astrocombs are ideal spectrograph calibrators whose limiting precision can be derived using a second, independent, astrocomb system. We therefore analyse data from two astrocombs (one 18 GHz and one 25 GHz) used simultaneously on the HARPS spectrograph at the European Southern Observatory. The first aim of this paper is to quantify the wavelength repeatability achieved by a particular astrocomb. The second aim is to measure wavelength calibration consistency between independent astrocombs, that is to place limits or measure any possible zero-point offsets. We present three main findings, each with important implications for exoplanet detection, varying fundamental constant and redshift drift measurements. Firstly, wavelength calibration procedures are important: using multiple segmented polynomials within one echelle order results in significantly better wavelength calibration compared to using a single higher-order polynomial. Segmented polynomials should be used in all applications aimed at precise spectral line position measurements. Secondly, we found that changing astrocombs causes significant zero-point offsets ( in our raw data) which were removed. Thirdly, astrocombs achieve a precision of in a single exposure ( above the measured photon-limited precision) and when time-averaged over a few hours, confirming previous results. Astrocombs therefore provide the technological requirements necessary for detecting Earth-Sun analogues, measuring variations of fundamental constants and the redshift drift.
16 pages, 17 figures, accepted for publication in MNRAS
References in corpus (9)
- The NumPy array: a structure for efficient numerical computation
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Frequency comb spectroscopy
- High-precision wavelength calibration of astronomical spectrographs with laser frequency combs
- Spatial variation in the fine-structure constant -- new results from VLT/UVES
- Cosmic dynamics in the era of Extremely Large Telescopes
- A crucial test for astronomical spectrograph calibration with frequency combs
- EELT-HIRES the high-resolution spectrograph for the E-ELT
- A Laser Frequency Comb System for Absolute Calibration of the VTT Echelle Spectrograph