Reconstructing the shock history in the CMZ of NGC 253 with ALCHEMI
arXiv:2303.12685 · doi:10.1051/0004-6361/202245659
Abstract
HNCO and SiO are well known shock tracers and have been observed in nearby galaxies, including the nearby (D=3.5 Mpc) starburst galaxy NGC 253. The simultaneous detection of these two species in regions where the star formation rate is high may be used to study the shock history of the gas. We perform a multi-line molecular study using these two shock tracers (SiO and HNCO) with the aim of characterizing the gas properties. We also explore the possibility of reconstructing the shock history in NGC 253's Central Molecular Zone (CMZ). Six SiO transitions and eleven HNCO transitions were imaged at high resolution (28 pc) with the Atacama Large Millimeter/submillimeter Array (ALMA) as part of the ALCHEMI Large Programme. Both non-LTE radiative transfer analysis and chemical modelling were performed in order to characterize the gas properties, and to investigate the chemical origin of the emission. The non-LTE radiative transfer analysis coupled with Bayesian inference shows clear evidence that the gas traced by SiO has different densities and temperatures than that traced by HNCO, with an indication that shocks are needed to produce both species. Chemical modelling further confirms such a scenario and suggests that fast and slow shocks are responsible for SiO and HNCO production, respectively, in most GMCs. We are also able to infer the physical characteristics of the shocks traced by SiO and HNCO for each GMC. Radiative transfer and chemical analysis of the SiO and HNCO in the CMZ of NGC 253 reveal a complex picture whereby most of the GMCs are subjected to shocks. We speculate on the possible shock scenarios responsible for the observed emission and provide potential history and timescales for each shock scenario. Higher spatial resolution observations of these two species are required in order to quantitatively differentiate between scenarios.
References in corpus (38)
- A multi-transition HCN and HCO+ study of 12 nearby active galaxies: AGN versus SB environments
- A statistical test for Nested Sampling algorithms
- ALMA Reveals the Molecular Medium Fueling the Nearest Nuclear Starburst
- The anatomy of the Orion B Giant Molecular Cloud: A local template for studies of nearby galaxies
- Parametrization of C-shocks. Evolution of the Sputtering of Grains
- Shedding light on the formation of the pre-biotic molecule formamide with ASAI
- Tracing shocks and photodissociation in the Galactic center region
- UCLCHEM: A Gas-Grain Chemical Code
- Molecular Line Emission as a Tool for Galaxy Observations (LEGO). I. HCN as a tracer of moderate gas densities in molecular clouds and galaxies
- Dense Molecular Gas Tracers in the Outflow of the Starburst Galaxy NGC 253
- Molecules with a peptide link in protostellar shocks: a comprehensive study of L1157
- Low Temperature Surface Formation of NH3 and HNCO: hydrogenation of nitrogen atoms in CO-rich interstellar ice analogues
- The millimeter IRAM-30m line survey toward IK Tau
- Multi-molecule ALMA observations towards the Seyfert 1 galaxy NGC 1097
- ALCHEMI: an ALMA Comprehensive High-resolution Extragalactic Molecular Inventory. Survey presentation and first results from the ACA array
- HCO mapping of the Horsehead : Tracing the illuminated dense molecular cloud surfaces
- Complex organic molecules in low-mass protostars on Solar System scales -- II. Nitrogen-bearing species
- ALMA observations of 99 GHz free-free and H40 line emission from star formation in the centre of NGC 253
- The GUAPOS project II. A comprehensive study of peptide-like bond molecules
- Characterizing the line emission from molecular clouds. Stratified random sampling of the Perseus cloud
- ALMA imaging of C2H emission in the disk of NGC1068
- Tracing Interstellar Heating: An ALCHEMI Measurement of the HCN Isomers in NGC 253
- New N-bearing species towards OH231.8+4.2: HNCO, HNCS, HCN and NO
- Molecular shock tracers in NGC 1068: SiO and HNCO
- The Distribution and Origin of CH in NGC 253 from ALCHEMI
- First extragalactic detection of a phosphorus-bearing molecule with ALCHEMI: phosphorus nitride (PN)
- Starburst Energy Feedback Seen Through HCO/HOC Emission in NGC 253 from ALCHEMI
- Energizing Star Formation: The Cosmic Ray Ionization Rate in NGC 253 Derived From ALCHEMI Measurements of HO and SO
- The Morpho-Kinematic Architecture of Super Star Clusters in the Center of NGC253
- Methanol masers in NGC 253 with ALCHEMI
- Molecular transitions as probes of the physical conditions of extragalactic environments
- Tracing high density gas in M 82 and NGC 4038
- The Interstellar Medium and Star Formation of Galactic Disks. I. ISM and GMC properties with Diffuse FUV and Cosmic Ray Backgrounds
- Impact of nonconvergence and various approximations of the partition function on the molecular column densities in the interstellar medium
- The chemical footprint of AGN feedback in the outflowing circumnuclear disk of NGC 1068
- Isocyanic acid (HNCO) in the Hot Molecular Core G331.512-0.103: Observations and Chemical Modelling
- ALCHEMI finds a "shocking" carbon footprint in the starburst galaxy NGC~253
- SiO, 29SiO, and 30SiO emission from 67 oxygen-rich stars. A survey of 61 maser lines from 7 to 1 mm
Cited by in corpus (6)
- An ALCHEMI inspection of sulphur-bearing species towards the central molecular zone of NGC 253
- Molecular isotopologue measurements toward super star clusters and the relation to their ages in NGC253 with ALCHEMI
- A multi-scale investigation into the diagnostic potential of the HCN/HCO ratio for AGN and starburst activity in nearby galaxies
- Shock-induced HCNH+ abundance enhancement in the heart of the starburst galaxy NGC 253 unveiled by ALCHEMI
- Complex Organic Molecules towards the central molecular zone of NGC 253
- Shock-type inference of L1157 B2 using methanol desorption