Evolution of Chemistry in the envelope of Hot Corinos (ECHOS). I. Extremely young sulphur chemistry in the isolated Class 0 object B335
arXiv:2309.01713 · doi:10.1051/0004-6361/202346721
Abstract
Within the project Evolution of Chemistry in the envelope of HOt corinoS (ECHOS), we present a study of sulphur chemistry in the envelope of the Class 0 source B335 through observations in the spectral range 7, 3, and 2 mm. We have modelled observations assuming LTE and LVG approximation. We have also used the code Nautilus to study the time evolution of sulphur species. We have detected 20 sulphur species with a total gas-phase S abundance similar to that found in the envelopes of other Class 0 objects, but with significant differences in the abundances between sulphur carbon chains and sulphur molecules containing oxygen and nitrogen. Our results highlight the nature of B335 as a source especially rich in sulphur carbon chains unlike other Class 0 sources. The low presence or absence of some molecules, such as SO and SO+, suggests a chemistry not particularly influenced by shocks. We, however, detect a large presence of HCS+ that, together with the low rotational temperatures obtained for all the S species (<15 K), reveals the moderate or low density of the envelope of B335. We also find that observations are better reproduced by models with a sulphur depletion factor of 10 with respect to the sulphur cosmic elemental abundance. The comparison between our model and observational results for B335 reveals an age of 10t10 yr, which highlights the particularly early evolutionary stage of this source. B335 presents a different chemistry compared to other young protostars that have formed in dense molecular clouds, which could be the result of accretion of surrounding material from the diffuse cloud onto the protostellar envelope of B335. In addition, the analysis of the SO2/C2S, SO/CS, and HCS+/CS ratios within a sample of prestellar cores and Class 0 objects show that they could be used as good chemical evolutionary indicators of the prestellar to protostellar transition.
References in corpus (33)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Non-thermal desorption from interstellar dust grains via exothermic surface reactions
- The ALMA Protostellar Interferometric Line Survey (PILS): First results from an unbiased submillimeter wavelength line survey of the Class 0 protostellar binary IRAS 16293-2422 with ALMA
- An Ice Age JWST inventory of dense molecular cloud ices
- Polycylcic Aromatic Hydrocarbons (PAH's) in dense cloud chemistry
- Modeling Sulfur Depletion in Interstellar Clouds
- Discovery of Interstellar Propylene (CH_2CHCH_3): Missing Links in Interstellar Gas-Phase Chemistry
- A protostellar system fed by a streamer of 10,500 au length
- Low sulfur depletion in the Horsehead PDR
- CORINOS I: JWST/MIRI Spectroscopy and Imaging of a Class 0 protostar IRAS 15398-3359
- APEX-CHAMP+ high-J CO observations of low-mass young stellar objects: IV. Mechanical and radiative feedback
- TMC-1, the starless core sulfur factory: Discovery of NCS, HCCS, H2CCS, H2CCCS, and C4S and detection of C5S
- Sulphur-bearing species in the star forming region L1689N
- Efficient Production of S in Interstellar Ices: The effects of cosmic ray-driven radiation chemistry and non-diffusive bulk reactions
- L483: Warm Carbon-Chain Chemistry Source Harboring Hot Corino Activity
- The census of complex organic molecules in the solar type protostar IRAS16293-2422
- Discovery of a Hot Corino in the Bok Globule B335
- Gas phase Elemental abundances in Molecular cloudS (GEMS). II. On the quest for the sulphur reservoir in molecular clouds: the case
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VII. Sulfur elemental abundance
- Spitzer Observations of Bok Globule B335: Isolated Star Formation Efficiency and Cloud Structure
- Modelling the sulphur chemistry evolution in Orion KL
- Efficiency of non-thermal desorptions in cold-core conditions. Testing the sputtering of grain mantles induced by cosmic rays
- Sulphur chemistry and molecular shocks: the case of NGC1333-IRAS2
- TMC-1C: an accreting starless core
- Gas phase Elemental abundances in Molecular cloudS (GEMS). IV. Observational results and statistical trends
- Magnetically regulated collapse in the B335 protostar? II. Observational constraints on gas ionization and magnetic field coupling
- Sulfur Chemistry in L1157-B1
- Evolutionary view through the starless cores in Taurus: deuteration in TMC 1-C and TMC 1-CP
- Gas-phase Elemental abundances in Molecular cloudS (GEMS) III. Unlocking the CS chemistry: the CS+O reaction
- Chemical Differentiation and Temperature Distribution on a Few au Scale around the Protostellar Source B335
- Models of Rotating Infall for the B335 Protostar
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VI. A sulphur journey across star-forming regions: study of thioformaldehyde emission
- FAUST VII. Detection of A Hot Corino in the Prototypical Warm Carbon-Chain Chemistry Source IRAS 15398-3359
Cited by in corpus (5)
- SO2 and OCS toward high-mass protostars: A comparative study between ice and gas
- An ALCHEMI inspection of sulphur-bearing species towards the central molecular zone of NGC 253
- Chemical inventory of the envelope of the Class I protostar L1551 IRS 5
- First detection of HS2 in a cold dark cloud
- Observational studies on S-bearing molecules in massive star forming regions