Vertically extended and asymmetric CN emission in the Elias 2-27 protoplanetary disk
arXiv:2207.08827 · doi:10.1051/0004-6361/202142693
Abstract
Elias 2-27 is a young star that hosts an extended, bright and inclined disk of dust and gas. The inclination and extreme flaring of the disk make Elias 2-27 an ideal target to study the vertical distribution of molecules, particularly CN. We directly trace the emission of CN in Elias 2-27 and compare it to previously published CO isotopologue data. CN emission is analyzed in two different transitions and , for which we detect two hyperfine group transitions. The vertical location of CN emission is traced directly from the channel maps, following geometrical methods that have been previously used to analyze the CO emission of Elias 2-27. Analytical models are used to parametrize the vertical profile of each molecule and study the extent of each tracer, additionally we compute radial profiles of column density and optical depth. We show that the vertical location of CN and CO isotopologues in Elias 2-27 is layered and consistent with predictions from thermochemical models. A north/south asymmetry in the radial extent of CN is detected and we find that the CN emission is mostly optically thin and constrained vertically to a thin slab at 0.5. A column density of 10\,cm is measured in the inner disk which for the north side decreases to 10\,cm and for the south side to 10\,cm in the outer regions. In Elias 2-27, CN traces a vertically elevated region above the midplane, very similar to that traced by CO. The inferred CN properties are consistent with thermo-chemical disk models, in which CN formation is initiated by the reaction of N with UV-pumped H. The observed north/south asymmetry may be caused by either ongoing infall or by a warped inner disk. This study highlights the importance of tracing the vertical location of various molecules to constrain the disk physical conditions.
Accepted for publication in A&A, 19 pages, 14 figures
References in corpus (38)
- Protoplanetary Disk Structures in Ophiuchus
- Observations of Protoplanetary Disk Structures
- Spiral Density Waves in a Young Protoplanetary Disk
- The Evolution of Outflow-Envelope Interactions in Low-Mass Protostars
- Astrochemistry and compositions of planetary systems
- Direct mapping of the temperature and velocity gradients in discs. Imaging the vertical CO snow line around IM Lupi
- Lupus disks with faint CO isotopologues: low gas/dust or large carbon depletion?
- The Disk Substructures at High Angular Resolution Project (DSHARP): III. Spiral Structures in the Millimeter Continuum of the Elias 27, IM Lup, and WaOph 6 Disks
- Gas density drops inside dust cavities of transitional disks around young stars observed with ALMA
- Nine localised deviations from Keplerian rotation in the DSHARP circumstellar disks: Kinematic evidence for protoplanets carving the gaps
- Molecules with ALMA at Planet-forming Scales (MAPS) IV: Emission Surfaces and Vertical Distribution of Molecules
- An ALMA Survey of CO isotopologue emission from Protoplanetary Disks in Chamaeleon I
- Sulfur chemistry in protoplanetary disks: CS and H2CS
- A survey of C2H, HCN, and C18O in protoplanetary disks
- CN rings in full protoplanetary disks around young stars as probes of disk structure
- Spiral Arms and a Massive Dust Disk with non-Keplerian Kinematics: Possible Evidence for Gravitational Instability in the Disk of Elias 2-27
- A new planet candidate detected in a dust gap of the disc around HD 163296 through localised kinematic signatures. An observational validation of the Discminer
- Molecules with ALMA at Planet-forming Scales (MAPS) VI: Distribution of the small organics HCN, C2H, and H2CO
- Molecules with ALMA at Planet-forming Scales (MAPS). IX. Distribution and Properties of the Large Organic Molecules HCN, CHCN, and -CH
- ALMA chemical survey of disk-outflow sources in Taurus (ALMA-DOT) II: Vertical stratification of CO, CS, CN, HCO, and CHOH in a Class I disk
- Direct evidence of multiple reservoirs of volatile nitrogen in a protosolar nebula analogue
- The chemical inventory of the planet-hosting disk PDS 70
- A dynamical measurement of the disk mass in Elias 2-27
- Unbiased mm-wave Line Surveys of TW Hya and V4046 Sgr: The Enhanced C2H and CN Abundances of Evolved Protoplanetary Disks
- Molecules with ALMA at Planet-forming Scales (MAPS) XI: CN and HCN as Tracers of Photochemistry in Disks
- Molecules in the disk orbiting the twin young suns of V4046 Sgr
- Gas temperature structure across transition disk cavities
- ALMA chemical survey of disk-outflow sources in Taurus (ALMA-DOT) V: Sample, overview, and demography of disk molecular emission
- ISPY -- NACO Imaging Survey for Planets around Young stars: Survey description and results from the first 2.5 years of observations
- Investigating the Relative Gas and Small Dust Grain Surface Heights in Protoplanetary Disks
- The Excitation Conditions of CN in TW Hya
- High Spatial Resolution Observations of Molecular Lines towards the Protoplanetary Disk around TW Hya with ALMA
- Chemical signatures of a warped protoplanetary disc
- Sensitive survey for 13CO, CN, H2CO, and SO in the disks of T Tauri and Herbig Ae stars II: Stars in Oph and upper Scorpius
- Characteristics of small protoplanetary disc warps in kinematic observations
- Warping Away Gravitational Instabilities in Protoplanetary Discs
- Tracing Molecular Stratification within an Edge-on Protoplanetary Disk
- Revealing the chemical structure of the Class I disc Oph-IRS 67
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- A dichotomy in group II Herbig disks: ALMA gas disk height measurements show both shadowed large vertically extended disks and compact flat disks
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- PRODIGE -- Planet-forming disks in Taurus with NOEMA. I. Overview and first results for 12CO, 13CO, and C18O
- Hidden under a warm blanket: If planets existed in protostellar disks, they would hardly produce observable substructures
- Angular momentum transport via gravitational instability in the Elias 2-27 disc
- Edge-On Disk Study (EODS) III: Molecular Stratification in the Flying Saucer Disk