English

Biosignature detectability on transiting habitable worlds with ELT/ANDES

Earth and Planetary Astrophysics 2026-07-13 v1 Instrumentation and Methods for Astrophysics

Abstract

The search for life beyond the Solar System is at a turning point, transitioning from theoretical predictions to observations enabled by next-generation observatories. The Extremely Large Telescope (ELT) will host the ArmazoNes high Dispersion Echelle Spectrograph (ANDES), optimized for visible-to-near-infrared high-resolution spectroscopy. We present a simulation--detection pipeline and evaluate the detectability of CO2_2, H2_2O, and the biosignature gases O2_2 and CH4_4 in high-resolution transmission spectroscopy of transiting habitable-zone rocky planets with ANDES. Assuming cloud-free, modern Earth-like atmospheres, we model transmission spectra using noise estimates from the ANDES Exposure Time Calculator, based on the latest preliminary instrument design in seeing-limited mode. We introduce a novel Bayesian cross-correlation function (CCF) framework that incorporates molecule-specific kernels and a new autoregressive model to account for correlations in the CCF. We apply our framework to 18 known potentially habitable transiting exoplanets and estimate the number of transits required for a decisive detection (log10B2.0\log_{10} B \ge 2.0). We find that H2_2O is the most accessible species, with potential detections in 10-19 transits for the TRAPPIST-1 planets and 30 transits for LHS 1140 b. CO2_2, CH4_4, and O2_2 are more difficult to detect, requiring approximately 1.5, 3, and 4 times as many transits as H2_2O. These estimates are lower limits that assume favorable observing conditions, perfect detrending, and the absence of systematics, yet still imply large observing campaigns. Alternative approaches, such as reflected-light high-dispersion coronagraphy of nearby nontransiting planets, may offer a promising complementary route for biosignature searches.

Keywords

Cite

@article{arxiv.2607.12017,
  title  = {Biosignature detectability on transiting habitable worlds with ELT/ANDES},
  author = {E. Kurzawa-Ferrandez and A. Bello-Arufe and R. Hu},
  journal= {arXiv preprint arXiv:2607.12017},
  year   = {2026}
}

Comments

31 pages, 8 figures. Accepted by AAS journals