Ultrafast X-ray induced damage and nonthermal melting in cadmium sulfide

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Main Author: Medvedev, Nikita
Format: Recurso digital
Published: Zenodo 2025
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author Medvedev, Nikita
author_facet Medvedev, Nikita
contents <p>Cadmium sulfide is a valuable material for solar cells, photovoltaic, and radiation detectors. It is thus important to evaluate the material damage mechanisms and damage threshold in response to irradiation. Here, we simulate the ultrafast XUV/X-ray irradiation of CdS with the combined model, XTANT-3. It accounts for nonequilibrium electronic and atomic dynamics, nonadiabatic coupling between the two systems, nonthermal melting and bond breaking due to electronic excitation. We find that the two phases of CdS, zinc blende and wurtzite, demonstrate very close damage threshold dose of ∼0.4–0.5 eV per atom. The damage is mainly thermal, whereas with increase of the dose, nonthermal effects begin to dominate leading to nonthermal melting. The transient disordered state is a high-density liquid, which may be semiconducting or metallic depending on the dose. Later recrystallization may recover the material back to the crystalline phase, or at high doses create an amorphous phase with variable bandgap. The revealed effects may potentially allow for controllable tuning of the band gap <em>via</em> laser irradiation of CdS.</p>
format Recurso digital
id zenodo_https___doi_org_10_1039_D5CP00525F
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Ultrafast X-ray induced damage and nonthermal melting in cadmium sulfide
Medvedev, Nikita
<p>Cadmium sulfide is a valuable material for solar cells, photovoltaic, and radiation detectors. It is thus important to evaluate the material damage mechanisms and damage threshold in response to irradiation. Here, we simulate the ultrafast XUV/X-ray irradiation of CdS with the combined model, XTANT-3. It accounts for nonequilibrium electronic and atomic dynamics, nonadiabatic coupling between the two systems, nonthermal melting and bond breaking due to electronic excitation. We find that the two phases of CdS, zinc blende and wurtzite, demonstrate very close damage threshold dose of ∼0.4–0.5 eV per atom. The damage is mainly thermal, whereas with increase of the dose, nonthermal effects begin to dominate leading to nonthermal melting. The transient disordered state is a high-density liquid, which may be semiconducting or metallic depending on the dose. Later recrystallization may recover the material back to the crystalline phase, or at high doses create an amorphous phase with variable bandgap. The revealed effects may potentially allow for controllable tuning of the band gap <em>via</em> laser irradiation of CdS.</p>
title Ultrafast X-ray induced damage and nonthermal melting in cadmium sulfide
url https://doi.org/10.1039/D5CP00525F