Signatures of UV radiation in low-mass protostars I. Origin of HCN and CN emission in the Serpens Main region
arXiv:2109.06793 · doi:10.1051/0004-6361/202140833
Abstract
Context: Ultraviolet radiation (UV) influences the physics and chemistry of star-forming regions, but its properties and significance in the immediate surroundings of low-mass protostars are still poorly understood. Aims: We aim to extend the use of the CN/HCN ratio, already established for high-mass protostars, to the low-mass regime to trace and characterize the UV field around low-mass protostars on pc scales. Methods: We present maps of the Serpens Main Cloud encompassing 10 protostars observed with the EMIR receiver at the IRAM 30 m telescope in CN 1-0, HCN 1-0, CS 3-2, and some of their isotopologues. The radiative-transfer code RADEX and the chemical model Nahoon are used to determine column densities of molecules, gas temperature and density, and the UV field strength, . Results: The spatial distribution of HCN and CS are well-correlated with CO 6-5 emission that traces outflows. The CN emission is extended from the central protostars to their immediate surroundings also tracing outflows, likely as a product of HCN photodissociation. The ratio of CN to HCN total column densities ranges from 1 to 12 corresponding to G for gas densities and temperatures typical for outflows of low-mass protostars. Conclusions: UV radiation associated with protostars and their outflows is indirectly identified in a significant part of the Serpens Main low-mass star-forming region. Its strength is consistent with the values obtained from the OH and HO ratios observed with Herschel and compared with models of UV-illuminated shocks. From a chemical viewpoint, the CN to HCN ratio is an excellent tracer of UV fields around low- and intermediate-mass star-forming regions.
32 pages, 25 figures, accepted by A\&A
References in corpus (21)
- The Critical Density and the Effective Excitation Density of Commonly Observed Molecular Dense Gas Tracers
- The SCUBA Legacy Catalogue: Continuum Objects Detected by SCUBA
- The 2014 KIDA network for interstellar chemistry
- Astrochemistry During the Formation of Stars
- Comparing Star Formation on Large Scales in the c2d Legacy Clouds: Bolocam 1.1 mm Dust Continuum Surveys of Serpens, Perseus, and Ophiuchus
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- The Gould's Belt Distances Survey (GOBELINS) III. The distance to the Serpens/Aquila Molecular Complex
- APEX-CHAMP+ high-J CO observations of low-mass young stellar objects: IV. Mechanical and radiative feedback
- ALMA observations of dust polarization and molecular line emission from the Class 0 protostellar source Serpens SMM1
- Cometary ices in forming protoplanetary disc midplanes
- Chemical Modelling of Young Stellar Objects, I. Method and Benchmarks
- CARMA Large Area Star Formation Survey: Structure and Kinematics of Dense Gas in Serpens Main
- Multidimensional chemical modelling, II. Irradiated outflow walls
- The complex chemistry of outflow cavity walls exposed: the case of low-mass protostars
- Shockingly low water abundances in Herschel / PACS observations of low-mass protostars in Perseus
- Tracing high energy radiation with molecular lines near deeply embedded protostars
- Origin of warm and hot gas emission from low-mass protostars: Herschel-HIFI observations of CO J=16-15. I. Line profiles, physical conditions, and H2O abundance
- The census of dense cores in the Serpens region from the Herschel Gould Belt Survey
- First in-situ detection of the CN radical in comets and evidence for a distributed source
- The effect of selective desorption mechanisms during interstellar ice formation
- The JCMT dense gas survey of the Perseus Molecular Cloud
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- ALMA ACA study of the HS/OCS ratio in low-mass protostars
- Physical conditions for dust grain alignment in Class 0 protostellar cores I. Observations of dust polarization and molecular irradiation tracers
- The Cygnus Allscale Survey of Chemistry and Dynamical Environments: CASCADE. II. A detailed kinematic analysis of the DR21 Main outflow
- UV-irradiated outflows from low-mass protostars in Ophiuchus with JWST/MIRI
- Far-infrared line emission from the outer Galaxy cluster Gy 3-7 with SOFIA/FIFI-LS: Physical conditions and UV fields