Full L- and M-band high resolution spectroscopy of the S CrA binary disks with VLT-CRIRES+
Sierra L. Grant, Giulio Bettoni, Andrea Banzatti, Ewine F. van, Dishoeck, Sean Brittain, Davide Fedele, Thomas Henning, Carlo Manara, Dmitry, Semenov, Emma Whelan

TL;DR
This paper presents high-resolution L- and M-band spectroscopy of the S CrA binary disks using the upgraded VLT-CRIRES+ instrument, revealing detailed gas properties and velocity components in the inner regions of the disks.
Contribution
It provides new insights into the gas in the inner disks of S CrA and demonstrates the capabilities of CRIRES+ for disk studies with high spectral resolution.
Findings
Detection of multiple molecular emission lines, including CO, OH, and H2O.
Identification of two velocity components in CO emission, indicating different gas regions.
CRIRES+ effectively characterizes inner disk gas and complements other observatories like JWST.
Abstract
The Cryogenic IR echelle Spectrometer (CRIRES) instrument at the Very Large Telescope (VLT) was in operation from 2006 to 2014. Great strides in characterizing the inner regions of protoplanetary disks were made using CRIRES observations in the L- and M-band at this time. The upgraded instrument, CRIRES+, became available in 2021 and covers a larger wavelength range simultaneously. Here we present new CRIRES+ Science Verification data of the binary system S Coronae Australis (S CrA). We aim to characterize the upgraded CRIRES+ instrument for disk studies and provide new insight into the gas in the inner disk of the S CrA N and S systems. We analyze the CRIRES+ data taken in all available L- and M-band settings, providing spectral coverage from 2.9 to 5.5 m. We detect emission from CO (v=1-0, v=2-1, and v=3-2), CO (v=1-0), hydrogen recombination lines, OH, and HO…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Molecular Spectroscopy and Structure · Atmospheric Ozone and Climate
