Local Coordination Modulates the Reflectivity of Liquefied Si-Ge Alloys

Fuente: arXiv
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Main Authors: Ricciarelli, Damiano, Deretzis, Ioannis, Calogero, Gaetano, Fisicaro, Giuseppe, Martello, Enrico, La Magna, Antonino
Format: Preprint
Published: 2023
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_version_ 1866911771202158592
author Ricciarelli, Damiano
Deretzis, Ioannis
Calogero, Gaetano
Fisicaro, Giuseppe
Martello, Enrico
La Magna, Antonino
author_facet Ricciarelli, Damiano
Deretzis, Ioannis
Calogero, Gaetano
Fisicaro, Giuseppe
Martello, Enrico
La Magna, Antonino
contents The properties of liquid Si-Ge binary systems at melting conditions deviate from those expected by the ideal alloy approximation. Particularly, a non-linear dependence of the dielectric functions occurs with the reflectivity of liquid Si-Ge reaching a maximum at 50\% Ge content, being 10\% higher than in pure Si or Ge. Using \textit{ab initio} methodologies, we modelled liquefied Si-Ge alloys, unveiling very high coordination numbers and poor symmetry in the first coordination shell with respect to Si and Ge, related to different bonding properties. We simulated optical functions, quantitatively replicating the aforementioned reflectivity trend and we highlighted a direct relationship between atomic structure and optical properties, indicating that the unusual optics arises from Si-Ge higher local coordination characterized by low symmetry. We forecast further implications for the overall class of these alloys. These findings expand our comprehension of liquefied semiconductors and are essential for implementing controlled laser melting procedures to highly dope these materials for advanced transistors, superconductors, sensors and plasmonic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2310_17205
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Local Coordination Modulates the Reflectivity of Liquefied Si-Ge Alloys
Ricciarelli, Damiano
Deretzis, Ioannis
Calogero, Gaetano
Fisicaro, Giuseppe
Martello, Enrico
La Magna, Antonino
Materials Science
The properties of liquid Si-Ge binary systems at melting conditions deviate from those expected by the ideal alloy approximation. Particularly, a non-linear dependence of the dielectric functions occurs with the reflectivity of liquid Si-Ge reaching a maximum at 50\% Ge content, being 10\% higher than in pure Si or Ge. Using \textit{ab initio} methodologies, we modelled liquefied Si-Ge alloys, unveiling very high coordination numbers and poor symmetry in the first coordination shell with respect to Si and Ge, related to different bonding properties. We simulated optical functions, quantitatively replicating the aforementioned reflectivity trend and we highlighted a direct relationship between atomic structure and optical properties, indicating that the unusual optics arises from Si-Ge higher local coordination characterized by low symmetry. We forecast further implications for the overall class of these alloys. These findings expand our comprehension of liquefied semiconductors and are essential for implementing controlled laser melting procedures to highly dope these materials for advanced transistors, superconductors, sensors and plasmonic devices.
title Local Coordination Modulates the Reflectivity of Liquefied Si-Ge Alloys
topic Materials Science
url https://arxiv.org/abs/2310.17205