Please use this identifier to cite or link to this item: http://hdl.handle.net/2445/198244
Title: Formation of Interstellar Silicate Dust via Nanocluster Aggregation: Insights From Quantum Chemistry Simulations
Author: Rimola, Albert
Bromley, Stefan Thomas
Keywords: Matèria interstel·lar
Teoria del funcional de densitat
Nanopartícules
Interstellar matter
Density functionals
Nanoparticles
Issue Date: 21-Apr-2021
Publisher: Frontiers Media
Abstract: The issue of formation of dust grains in the interstellar medium is still a matter of debate. One of the most developed proposals suggests that atomic and heteromolecular seeds bind together to initiate a nucleation process leading to the formation of nanostructures resembling very small grain components. In the case of silicates, nucleated systems can result in molecular nanoclusters with diameters ≤ 2 nm. A reasonable path to further increase the size of these proto-silicate nanoclusters is by mutual aggregation. The present work deals with modeling this proto-silicate nanocluster aggregation process by means of quantum chemical density functional theory calculations. We simulate nanocluster aggregation by progressively reducing the size of a periodic array of initially well-separated nanoclusters. The resulting aggregation leads to a set of silicate bulk structures with gradually increasing density which we analyze with respect to structure, energetics and spectroscopic properties. Our results indicate that aggregation is a highly energetically favorable process, in which the infrared spectra of the finally formed amorphous silicates match well with astronomical observations.
Note: Reproducció del document publicat a: https://doi.org/10.3389/fspas.2021.659494
It is part of: Frontiers In Astronomy And Space Sciences, 2021, vol. 8
URI: http://hdl.handle.net/2445/198244
Related resource: https://doi.org/10.3389/fspas.2021.659494
ISSN: 2296-987X
Appears in Collections:Articles publicats en revistes (Ciència dels Materials i Química Física)

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