2 research outputs found
Scanning disk rings and winds in CO at 0.01-10 au: a high-resolution -band spectroscopy survey with IRTF-iSHELL
We present an overview and first results from a -band spectroscopic survey
of planet-forming disks performed with iSHELL on IRTF, using two slits that
provide resolving power R 60,000-92,000 (5-3.3 km/s). iSHELL provides
a nearly complete coverage at 4.52-5.24 m in one shot, covering
lines from the R and P branches of CO and CO for each of multiple
vibrational levels, and providing unprecedented information on the excitation
of multiple emission and absorption components. Some of the most notable new
findings of this survey are: 1) the detection of two CO Keplerian rings at
au (in HD 259431), 2) the detection of HO ro-vibrational lines at 5
m (in AS 205 N), and 3) the common kinematic variability of CO lines over
timescales of 1-14 years. By homogeneously analyzing this survey together with
a previous VLT-CRIRES survey of cooler stars, we discuss a unified view of CO
spectra where emission and absorption components scan the disk surface across
radii from a dust-free region within dust sublimation out to au. We
classify two fundamental types of CO line shapes interpreted as emission from
Keplerian rings (double-peak lines) and a disk surface plus a low-velocity part
of a wind (triangular lines), where CO excitation reflects different emitting
regions (and their gas-to-dust ratio) rather than just the irradiation
spectrum. A disk+wind interpretation for the triangular lines naturally
explains several properties observed in CO spectra, including the line
blue-shifts, line shapes that turn into narrow absorption at high inclinations,
and the frequency of disk winds as a function of stellar type.Comment: Accepted for publication on The Astronomical Journa
IRTF/VLT M-band spectroscopic survey
VizieR online Data Catalogue associated with article published in journal Astronomical Journal (AAS) with title \u27Scanning Disk Rings and Winds in CO at 0.01-10au; A High-resolution M-band Spectroscopy Survey with IRTF-iSHELL\u27 (bibcode: 2022AJ....163..174B