Modeling and Validation of optical transition and absorption spectra of realistic self-assembled InAs/GaAs quantum dot systems

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1. Verfasser: Sinha, Shambhu Sharan kumar
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2025
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author Sinha, Shambhu Sharan kumar
author_facet Sinha, Shambhu Sharan kumar
contents <p><span>This dataset supports the research article titled <em>"On the Optical Transition and Absorption Spectra of Realistic Self-Assembled InAs/GaAs Quantum Dot Systems."  </em>It contains numerical simulation results of absorption spectra, calculated peak photon energy, peak photon energy difference and its ratio as a function of aspect ratio, used in the quantum dot calculations, and validation data extracted from literature. The data were generated using a MATLAB-based computational model that incorporates strain effects, 3D geometry, aspect ratio variation, and intermixing. This dataset enables reproducibility of the results and may benefit researchers working on optoelectronic device modeling, quantum dot characterization, and nanostructure design.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15281068
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Modeling and Validation of optical transition and absorption spectra of realistic self-assembled InAs/GaAs quantum dot systems
Sinha, Shambhu Sharan kumar
optical absorption spectra
InAs/GaAs
Aspect ratio
Quantum Dots
III-V Semiconductor
Peak Photon Energy
<p><span>This dataset supports the research article titled <em>"On the Optical Transition and Absorption Spectra of Realistic Self-Assembled InAs/GaAs Quantum Dot Systems."  </em>It contains numerical simulation results of absorption spectra, calculated peak photon energy, peak photon energy difference and its ratio as a function of aspect ratio, used in the quantum dot calculations, and validation data extracted from literature. The data were generated using a MATLAB-based computational model that incorporates strain effects, 3D geometry, aspect ratio variation, and intermixing. This dataset enables reproducibility of the results and may benefit researchers working on optoelectronic device modeling, quantum dot characterization, and nanostructure design.</span></p>
title Modeling and Validation of optical transition and absorption spectra of realistic self-assembled InAs/GaAs quantum dot systems
topic optical absorption spectra
InAs/GaAs
Aspect ratio
Quantum Dots
III-V Semiconductor
Peak Photon Energy
url https://doi.org/10.5281/zenodo.15281068