Physical nature of quasi-stable structures existing in antimony melt

Fuente: arXiv
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Main Authors: Tsygankov, Artem A., Galimzyanov, Bulat N., Mokshin, Anatolii V.
Format: Preprint
Published: 2024
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_version_ 1866929648658546688
author Tsygankov, Artem A.
Galimzyanov, Bulat N.
Mokshin, Anatolii V.
author_facet Tsygankov, Artem A.
Galimzyanov, Bulat N.
Mokshin, Anatolii V.
contents Equilibrium antimony melt near the melting temperature is characterised by structural features that are not present in simple single-component liquids. The cause of these features may be long-lived structural formations that are not yet fully understood. The present work provides the detailed characterization of the structures formed in liquid antimony near the melting temperature based on the results of quantum chemical calculations and the available neutron and X-ray diffraction data. The quasi-stable structures in antimony melt are detected with lifetimes exceeding the structural relaxation time of this melt. These structures are characterised by a low degree of order and spatial localisation. It is shown for the first time that the elementary units of these quasi-stable structures are triplets of atoms with characteristic lengths of $3.07$\,Å~and $4.7$\,Å~and characteristic angles of $45$ and $90$ degrees. It was found that these triplets can form chains and percolating clusters up to $\sim15$\,Å~in length. The characteristic lengths of these triplets are fully consistent with the correlation lengths associated with short-range order in the antimony melt as determined by diffraction experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2412_19177
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Physical nature of quasi-stable structures existing in antimony melt
Tsygankov, Artem A.
Galimzyanov, Bulat N.
Mokshin, Anatolii V.
Materials Science
Equilibrium antimony melt near the melting temperature is characterised by structural features that are not present in simple single-component liquids. The cause of these features may be long-lived structural formations that are not yet fully understood. The present work provides the detailed characterization of the structures formed in liquid antimony near the melting temperature based on the results of quantum chemical calculations and the available neutron and X-ray diffraction data. The quasi-stable structures in antimony melt are detected with lifetimes exceeding the structural relaxation time of this melt. These structures are characterised by a low degree of order and spatial localisation. It is shown for the first time that the elementary units of these quasi-stable structures are triplets of atoms with characteristic lengths of $3.07$\,Å~and $4.7$\,Å~and characteristic angles of $45$ and $90$ degrees. It was found that these triplets can form chains and percolating clusters up to $\sim15$\,Å~in length. The characteristic lengths of these triplets are fully consistent with the correlation lengths associated with short-range order in the antimony melt as determined by diffraction experiments.
title Physical nature of quasi-stable structures existing in antimony melt
topic Materials Science
url https://arxiv.org/abs/2412.19177