The evolution of organic matter in space

Author:

Ehrenfreund Pascale12,Spaans Marco3,Holm Nils G.4

Affiliation:

1. Space Policy Institute, 1957 E Street, Suite 403, 20052, Washington DC, USA

2. Leiden Institute of Chemistry, Astrobiology Laboratory, 2300 RA Leiden, The Netherlands

3. Kapteyn Astronomical Institute, PO Box 800, 9700 AV Groningen, The Netherlands

4. Department of Geological Sciences, Stockholm University, Stockholm, Sweden

Abstract

Carbon, and molecules made from it, have already been observed in the early Universe. During cosmic time, many galaxies undergo intense periods of star formation, during which heavy elements like carbon, oxygen, nitrogen, silicon and iron are produced. Also, many complex molecules, from carbon monoxide to polycyclic aromatic hydrocarbons, are detected in these systems, like they are for our own Galaxy. Interstellar molecular clouds and circumstellar envelopes are factories of complex molecular synthesis. A surprisingly high number of molecules that are used in contemporary biochemistry on the Earth are found in the interstellar medium, planetary atmospheres and surfaces, comets, asteroids and meteorites and interplanetary dust particles. Large quantities of extra-terrestrial material were delivered via comets and asteroids to young planetary surfaces during the heavy bombardment phase. Monitoring the formation and evolution of organic matter in space is crucial in order to determine the prebiotic reservoirs available to the early Earth. It is equally important to reveal abiotic routes to prebiotic molecules in the Earth environments. Materials from both carbon sources (extra-terrestrial and endogenous) may have contributed to biochemical pathways on the Earth leading to life’s origin. The research avenues discussed also guide us to extend our knowledge to other habitable worlds.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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