First detection of deuterated methylidyne (CD) in the interstellar medium
arXiv:2305.07143 · doi:10.1051/0004-6361/202245209
Abstract
While the abundance of elemental deuterium is relatively low (D/H ~ a few 1E-5), orders of magnitude higher D/H abundance ratios have been found for many interstellar molecules, enhanced by deuterium fractionation. In cold molecular clouds (T < 20K) deuterium fractionation is driven by the H2D+ ion, whereas at higher temperatures (T > 20-30K) gas-phase deuteration is controlled by reactions with CH2D+ and C2HD+. While the role of H2D+ in driving cold interstellar deuterium chemistry is well understood, thanks to observational constraints from direct measurements of H2D+, deuteration stemming from CH2D+ is far less understood, caused by the absence of direct observational constraints of its key ions. Therefore, making use of chemical surrogates is imperative for exploring deuterium chemistry at intermediate temperatures. Formed at an early stage of ion-molecule chemistry, directly from the dissociative recombination of CH3+ (CH2D+), CH (CD) is an ideal tracer for investigating deuterium substitution initiated by reactions with CH2D+. This paper reports the first detection of CD in the interstellar medium, carried out using the APEX 12m telescope toward the widely studied low-mass protostellar system IRAS 16293-2422. Gas-phase chemical models reproducing the observed CD/CH abundance ratio of 0.016 suggests that it reflects `warm deuterium chemistry' (which ensues in moderately warm conditions of the interstellar medium) and illustrates the potential use of the CD/CH ratio in constraining the gas temperatures of the envelope gas clouds it probes.
Accepted for publication in Astronomy & Astrophysics (14 pages, 11 figures and 7 tables including Appendix)
References in corpus (20)
- Array Programming with NumPy
- The 2014 KIDA network for interstellar chemistry
- Early Science with SOFIA, the Stratospheric Observatory for Infrared Astronomy
- Ultraviolet Survey of CO and H_2 in Diffuse Molecular Clouds: The Reflection of Two Photochemistry Regimes in Abundance Relationships
- First detection of triply-deuterated methanol
- The importance of the ortho:para H2 ratio for the deuteration of molecules during pre-protostellar collapse
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- The upGREAT 1.9 THz multi-pixel high resolution spectrometer for the SOFIA Observatory
- Benchmarking spin-state chemistry in starless core models
- A multi-transition submillimeter water maser study of evolved stars - detection of a new line near 475 GHz
- First detection of 13CH in the interstellar medium
- CH in absorption in IRAS16293-2422
- Dust hot spots at 10 au scales around the Class 0 binary IRAS 16293-2422 A: a departure from the passive irradiation model
- Hubble Space Telescope Measurements of Vacuum Ultraviolet Lines of Interstellar CH
- First detection of NHD and ND in the interstellar medium
- Evidence of Cosmic-Ray Excess from Local Giant Molecular Clouds
- ATLASGAL -- selected massive clumps in the inner Galaxy. IX. Deuteration of ammonia
- Torsional-rotational spectrum of doubly-deuterated dimethyl ether (CHOCHD) -- First ALMA detection in the interstellar medium
- 4GREAT -- a four-color receiver for high-resolution airborne terahertz spectroscopy
- Direct D-atom incorporation in radicals: An overlooked pathway for deuterium fractionation