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Detecting Biosignatures of Nearby Rocky Exoplanets: Simulations of High Spectral Resolution Observations with the ELTs

Authors: Vaughan, Sophia Romana; Birkby, Jayne; Thatte, Niranjan; Carlotti, Alexis; Santaella, Miguel Pereira; Pierrehumbert, Raymond;

Detecting Biosignatures of Nearby Rocky Exoplanets: Simulations of High Spectral Resolution Observations with the ELTs

Abstract

The imminent arrival of the Extremely Large Telescopes (ELTs) will finally deliver the observational power capable of assessing the habitability of nearby rocky exoplanets. The ELT presents us with the exciting opportunity of being able to spatially resolve the terrestrial exoplanet Proxima b, which lies in the habitable zone of Proxima Centuri. This would allow molecule mapping, a technique that uses the spatial separation plus cross correlation high resolution spectroscopy to disentangle the planet's spectrum from the host star and characterise its atmosphere. Here we present simulations in reflected light for the High Contrast Adaptive Optics (HCAO) mode of HARMONI/ELT, using model planet spectra from the Carl Sagan Institute designed specifically for Proxima b and its M-dwarf host star. HARMONI's resolution (R=17,385) is well suited to molecule mapping, with access to wavelengths covering multiple biosignatures. Our simulator shows that this first light ELT instrument can characterise the atmosphere of Proxima b, within a very reasonable time frame, but requires intervention on the focal plane masks in HARMONI's current instrument design. If changed, HARMONI has the potential to identify CO2, CH4, and H2O in Proxima b. Our simulator is highly versatile and we are extending to other instruments for the ELTs, including METIS/ELT and GMagAO-X+IFS/GMT.

{"references": ["Brandl et al. (2021)", "Gullikson, Dodson-Robinson, and Kraus (2014)", "Hoeijmakers et al. (2018)", "Houlle et al. (2021)", "Husser et al. (2013)", "Jones et al. (2013)", "Krissansen-Totton et al. (2018)", "Lin and Kaltenegger. (2020)", "Noll et al. (2012)", "Petit dit de la Roche et al. (2018)", "Ruffio et al. (2019)", "Snellen et al. (2015)", "Turnbull et al. (2006)", "Wang et al. (2021)", "Zieleniewski et al. (2015)"]}

Keywords

ELT, spectroscopy, HARMONI, exoplanet, High Resolution

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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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