The rapid formation of macromolecules in irradiated ice of protoplanetary disk dust traps

Fuente: arXiv
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Autori principali: Ligterink, Niels F. W., Pinilla, Paola, van der Marel, Nienke, van Scheltinga, Jeroen Terwisscha, Booth, Alice S., Alexander, Conel M. O'D., Riebe, My E. I.
Natura: Preprint
Pubblicazione: 2025
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author Ligterink, Niels F. W.
Pinilla, Paola
van der Marel, Nienke
van Scheltinga, Jeroen Terwisscha
Booth, Alice S.
Alexander, Conel M. O'D.
Riebe, My E. I.
author_facet Ligterink, Niels F. W.
Pinilla, Paola
van der Marel, Nienke
van Scheltinga, Jeroen Terwisscha
Booth, Alice S.
Alexander, Conel M. O'D.
Riebe, My E. I.
contents Organic macromolecular matter is the dominant carrier of volatile elements such as carbon, nitrogen, and noble gases in chondrites -- the rocky building blocks from which Earth formed. How this macromolecular substance formed in space is unclear. We show that its formation could be associated with the presence of dust traps, which are prominent mechanisms for forming planetesimals in planet-forming disks. We demonstrate the existence of heavily irradiated zones in dust traps, where small frozen molecules that coat large quantities of microscopic dust grains could be rapidly converted into macromolecular matter by receiving radiation doses of up to several 10s of eV molecule$^{-1}$ year$^{-1}$. This allows for the transformation of simple molecules into complex macromolecular matter within several decades. Up to roughly 4$\%$ of the total disk ice reservoir can be processed this way and subsequently incorporated into the protoplanetary disk midplane where planetesimals form. This finding shows that planetesimal formation and the production of organic macromolecular matter, which provides the essential elemental building blocks for life, might be linked.
format Preprint
id arxiv_https___arxiv_org_abs_2501_10512
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The rapid formation of macromolecules in irradiated ice of protoplanetary disk dust traps
Ligterink, Niels F. W.
Pinilla, Paola
van der Marel, Nienke
van Scheltinga, Jeroen Terwisscha
Booth, Alice S.
Alexander, Conel M. O'D.
Riebe, My E. I.
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Organic macromolecular matter is the dominant carrier of volatile elements such as carbon, nitrogen, and noble gases in chondrites -- the rocky building blocks from which Earth formed. How this macromolecular substance formed in space is unclear. We show that its formation could be associated with the presence of dust traps, which are prominent mechanisms for forming planetesimals in planet-forming disks. We demonstrate the existence of heavily irradiated zones in dust traps, where small frozen molecules that coat large quantities of microscopic dust grains could be rapidly converted into macromolecular matter by receiving radiation doses of up to several 10s of eV molecule$^{-1}$ year$^{-1}$. This allows for the transformation of simple molecules into complex macromolecular matter within several decades. Up to roughly 4$\%$ of the total disk ice reservoir can be processed this way and subsequently incorporated into the protoplanetary disk midplane where planetesimals form. This finding shows that planetesimal formation and the production of organic macromolecular matter, which provides the essential elemental building blocks for life, might be linked.
title The rapid formation of macromolecules in irradiated ice of protoplanetary disk dust traps
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2501.10512