Detection of the cyanomidyl radical (HNCN): a new interstellar species with the NCN backbone
arXiv:2106.09652 · doi:10.1093/mnrasl/slab074
Abstract
We report here the first detection in the interstellar medium of the cyanomidyl radical (HNCN). Using the Yebes 40m and the IRAM 30m telescopes, we have targeted the doublets of the =21, 43, 54, 65, and 76 transitions of HNCN toward the molecular cloud G+0.693-0.027. We have detected three unblended lines of HNCN, these are the =65 doublet and one line of the =43 transition. Additionally we present one line of the =54 transition partially blended with emission from other species. The Local Thermodynamic Equilibrium best fit to the data gives a molecular abundance of (0.910.05)10 with respect to H. The relatively low abundance of this species in G+0.693-0.027, and its high reactivity, suggest that HNCN is possibly produced by gas-phase chemistry. Our work shows that this highly reactive molecule is present in interstellar space, and thus it represents a plausible precursor of larger prebiotic molecules with the NCN backbone such as cyanamide (NHCN), carbodiimide (HNCNH) and formamidine (NHCHNH).
Accepted in Monthly Notices of the Royal Astronomical Society Letters
References in corpus (12)
- The largest oxigen bearing organic molecule repository
- Tracing shocks and photodissociation in the Galactic center region
- Yebes 40 m radio telescope and the broad band NANOCOSMOS receivers at 7 mm and 3 mm for line surveys
- Discovery in space of ethanolamine, the simplest phospholipid head group
- Organic Molecules in the Galactic Center. Hot Core Chemistry without Hot Cores
- Thiols in the ISM: first detection of HC(O)SH and confirmation of CHSH
- Prebiotic precursors of the primordial RNA world in space: Detection of NHOH
- Cloud-cloud collision as drivers of the chemical complexity in Galactic Centre molecular clouds
- Phosphorus-bearing molecules in the Galactic Center
- Propargylimine in the laboratory and in space: millimetre-wave spectroscopy and first detection in the ISM
- Trans-cis molecular photoswitching in interstellar Space
- Detection of the HCNH and HCNH ions in the L1544 pre-stellar core
Cited by in corpus (20)
- Precursors of fatty alcohols in the ISM: Discovery of n-propanol
- Discovery of the elusive carbonic acid (HOCOOH) in space
- First detection of CHNCO in the ISM and search of other isocyanates towards the G+0.693-0.027 molecular cloud
- First detection in space of the high-energy isomer of cyanomethanimine: H2CNCN
- Amides inventory towards the G+0.693-0.027 molecular cloud
- Digging into the Interior of Hot Cores with ALMA (DIHCA). III: The Chemical Link between NHCHO, HNCO, and HCO
- Discovery of thionylimide, HNSO, in space: the first N-, S- and O-bearing interstellar molecule
- Toward the limits of complexity of interstellar chemistry: Rotational spectroscopy and astronomical search for n- and i-butanal
- The first detection of SiC in the interstellar medium
- Shocking Sgr B2(N1) with its own outflow: A new perspective on segregation between O- and N-bearing molecules
- Chemical models of adenine precursors cyanamide and carbodiimide in the interstellar medium
- Conformational isomerism of methyl formate: new detections of the higher-energy trans conformer and theoretical insights
- Millimetre and submillimetre spectroscopy of isobutene and its detection in the molecular cloud G+0.693
- H2CN/H2NC abundance ratio: a new potential temperature tracer for the interstellar medium
- The salty emission of the intermediate-mass AGB star OH 30.1 -0.7
- Rotation-tunneling spectrum and astrochemical modeling of dimethylamine, CHNHCH, and searches for it in space
- Advancing spectroscopic understanding of HOCS: Laboratory investigations and astronomical implications
- A high-resolution spectroscopic analysis of aminoacrylonitrile and an interstellar search towards G+0.693
- Precursors of the RNA-world in space: Detection of ()-1,2-ethenediol in the interstellar medium, a key intermediate in sugar formation
- Synthesis and Spectroscopic Characterization of Interstellar Candidate Ethynyl Thiocyanate: HCCSCN