Nascent chemical complexity in prestellar core IRAS 16293E: complex organics and deuterated methanol
arXiv:2508.04762 · doi:10.1051/0004-6361/202553696
Abstract
Prestellar cores represent early sites of low-mass ( few M) star and planet formation and provide insight into initial chemical conditions of complex organic molecules (COMs). Deuterated COMs trace the degree of molecular inheritance and/or reprocessing, as high deuteration in protostellar systems suggests COMs forming during the prestellar stage when deuteration is enhanced. Within the L1689N molecular cloud, the prestellar core IRAS 16293E sits eastward of the chemically-rich IRAS 16293-2422 A and B protostellar system. A unique view of star formation inside a common natal cloud, IRAS 16293A, B, and E all show some of the highest levels of deuteration in the ISM, with a number of D/H ratios times higher than Solar. We investigate for the first time the deuteration levels of the simplest COM, methanol (CHOH), in IRAS 16293E. Using the Arizona Radio Observatory (ARO) 12 m telescope, we target favorable transitions of CHDOH, CHDOH, CHOH, and several higher complexity COMs (including acetaldehyde, CHCHO, methyl formate, HCOOCH, and dimethyl ether, CHOCH) in the 3 mm band. Follow-up observations with the Yebes 40 m telescope provided additional transitions in the 7 mm (Q-band). We report the first detections of these COMs and deuterated methanol in prestellar core IRAS 16293E and use our observations to calculate excitation temperatures, column densities, and relative abundance ratios. Striking similarities are found between relative molecular ratios and D/H values when comparing IRAS 16293E to the A and B protostars, as well as to a heterogeneous sample of other prestellar cores, protostars, and the comet 67P/Churyumov-Gerasimenko. Our results support the idea that there is a limited amount of chemical reprocessing of COMs when prestellar cores collapse and heat-up during the protostellar phase.
18 pages; Accepted for publication in A&A
References in corpus (21)
- 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
- Observing the gas temperature drop in the high-density nucleus of L 1544
- First detection of triply-deuterated methanol
- The origin of complex organic molecules in prestellar cores
- The Spatial Distribution of Complex Organic Molecules in the L1544 Pre-stellar Core
- Constraining the abundances of complex organics in the inner regions of solar-type protostars
- Survey of ortho-H2D+(1_{1,0}-1_{1,1}) in dense cloud cores
- Yebes 40 m radio telescope and the broad band NANOCOSMOS receivers at 7 mm and 3 mm for line surveys
- Current Star Formation in the Ophiuchus and Perseus Molecular Clouds: Constraints and Comparisons from Unbiased Submillimeter and Mid-Infrared Surveys. II
- The Different Structures of the Two Classes of Starless Cores
- A New Reference Chemical Composition for TMC-1
- Complex organic molecules in low-mass protostars on solar system scales -- I. Oxygen-bearing species
- pyspeckit: A spectroscopic analysis and plotting package
- First Abundance Measurement of Organic Molecules in the Atmosphere of HH 212 Protostellar Disk
- Decrease of the organic deuteration during the evolution of Sun-like protostars: the case of SVS13-A
- The complex organic molecular content in the L1498 starless core
- Deuterated methanol on Solar System scale around the HH212 protostar
- A Survey of CH2DOH Towards Starless and Prestellar Cores in the Taurus Molecular Cloud
- Successive deuteration in low-mass star-forming regions: the case of D-methanol (CHDOH) in IRAS 16293-2422
- Oxygen-bearing organic molecules in comet 67P's dusty coma: first evidence for abundant heterocycles
- Hunting pre-stellar cores with APEX: IRAS16293E (Oph464)