Measuring titanium isotope ratios in exoplanet atmospheres
arXiv:2110.01908 · doi:10.1051/0004-6361/202141941
Abstract
[abridged] Measurements of relative isotope abundances can provide unique insights into the formation and evolution histories of celestial bodies. The five stable isotopes of titanium are used to study the early history of the solar system and constrain Galactic chemical models. The minor isotopes of titanium are relatively abundant compared to those of other elements, making them more accessible for challenging observations. We assessed the feasibility of performing titanium isotope measurements in exoplanet atmospheres, and in particular, whether processing techniques used for high-resolution spectroscopy affect the derived isotope ratios. We used an archival high-dispersion CARMENES spectrum of the M-dwarf GJ 1002 as a proxy for an exoplanet observed at very high signal-to-noise. Spectral retrievals using petitRADTRANS models were performed on both narrow (7045-7090 Å) and wide (7045-7500 Å) wavelength regions, resulting in isotope ratios and uncertainties. These retrievals were repeated on the spectrum with its continuum removed to mimic typical high-dispersion exoplanet observations. The relative abundances of all minor Ti isotopes are found to be slightly enhanced compared to terrestrial values. Loss of continuum information from broadband spectral filtering has little effect on the isotope ratios. The CARMENES spectrum was subsequently degraded by adding varying levels of Gaussian noise to estimate the signal-to-noise requirements for future exoplanet atmospheric observations. For the wide wavelength range, a spectrum with signal-to-noise of 5 is required to determine the isotope ratios with relative errors 10%. Super Jupiters at large angular separations from their host star are the most accessible exoplanets, requiring about an hour of observing time on 8-meter-class telescopes, and less than a minute of observing time with the future Extremely Large Telescope.
Accepted to A&A; 13 pages, 6 figures
References in corpus (18)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- Spectrum radial velocity analyser (SERVAL). High-precision radial velocities and two alternative spectral indicators
- Can TiO Explain Thermal Inversions in the Upper Atmospheres of Irradiated Giant Planets?
- Detection of Fe I in the atmosphere of the ultra-hot Jupiter WASP-121b, and a new likelihood-based approach for Doppler-resolved spectroscopy
- High-Resolution Spectroscopic Detection of TiO and Stratosphere in the Day-side of WASP-33b
- The evolution of CNO isotopes: a new window on cosmic star-formation history and the stellar IMF in the age of ALMA
- The 13O-rich atmosphere of a young accreting super-Jupiter
- New Avenues for Thermal Inversions in hot Jupiters
- First Detection of Hydroxyl Radical Emission from an Exoplanet Atmosphere: High-dispersion Characterization of WASP-33b using Subaru/IRD
- Detection of Fe and evidence for TiO in the dayside emission spectrum of WASP-33b
- An ALMA and MagAO Study of the Substellar Companion GQ Lup B
- Comprehensive time series analysis of the transiting extrasolar planet WASP-33b
- Observing Isotopologue Bands in Terrestrial Exoplanet Atmospheres with the James Webb Space Telescope---Implications for Identifying Past Atmospheric and Ocean Loss
- Is TiO emission present in the ultra-hot Jupiter WASP-33b? A reassessment using the improved ExoMol Toto line list
- Evidence for TiO in the atmosphere of the hot Jupiter HAT-P-65 b
- Analysis of the TiO isotopologues in stellar optical spectra
- Isotopic Titanium Abundances in Local M Dwarfs