The SKA as a prebiotic molecule detector
arXiv:2203.00534 · doi:10.3389/fspas.2022.843766
Abstract
One of the theories for the origin of life proposes that a significant fraction of prebiotic material could have arrived to Earth from outer space between 4.1 and 3.8 billion years ago. This suggests that those prebiotic compounds could have originated in interstellar space, to be later on incorporated to small Solar-system bodies and planetesimals. The recent discovery of prebiotic molecules such as hydroxylamine and ethanolamine in the interstellar medium, strongly supports this hypothesis. However, some species such as sugars, key for the synthesis of ribonucleotides and for metabolic processes, remain to be discovered in space. The unmatched sensitivity of the Square Kilometer Array (SKA) at centimeter wavelengths will be able to detect even more complex and heavier prebiotic molecules than existing instrumentation. In this contribution, we illustrate the potential of the SKA to detect simple sugars with three and four carbon atoms, using a moderate investment of observing time.
12 pages, 1 figure, 1 table, accepted for Frontiers in Astronomy and Space Sciences, section Astrochemistry
References in corpus (13)
- Detection of Two Interstellar Polycyclic Aromatic Hydrocarbons via Spectral Matched Filtering
- 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
- Detection of a branched alkyl molecule in the interstellar medium: iso-propyl cyanide
- The largest oxigen bearing organic molecule repository
- Discovery in space of ethanolamine, the simplest phospholipid head group
- Anticipated Performance of the Square Kilometre Array -- Phase 1 (SKA1)
- 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
- First detection of the pre-biotic molecule glycolonitrile (HOCH2CN) in the interstellar medium
- Probing the chemical complexity of amines in the ISM: detection of vinylamine (CHNH) and tentative detection of ethylamine (CHNH)
- Widespread Presence of Glycolaldehyde and Ethylene Glycol Around Sagittarius B2
- Detectability of Glycine in Solar-type System Precursors
- Mapping Observations of complex organic molecules around Sagittarius B2 with ARO 12m telescope