Optical library of Ga2O3 polymorphs

Fuente: arXiv
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Hauptverfasser: Galeckas, Augustinas, Cernescu, Adrian, Kaźmierczak-Bałata, Anna, García-Fernández, Javier, Bazioti, Calliope, Azarov, Alexander, Park, Ji-Hyeon, Jeon, Dae-Woo, Lee, Halin, Lee, Won-Jae, Zhu, Rui, Mei, Zengxia, Prytz, Øystein, Kuznetsov, Andrej
Format: Preprint
Veröffentlicht: 2024
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author Galeckas, Augustinas
Cernescu, Adrian
Kaźmierczak-Bałata, Anna
García-Fernández, Javier
Bazioti, Calliope
Azarov, Alexander
Park, Ji-Hyeon
Jeon, Dae-Woo
Lee, Halin
Lee, Won-Jae
Zhu, Rui
Mei, Zengxia
Prytz, Øystein
Kuznetsov, Andrej
author_facet Galeckas, Augustinas
Cernescu, Adrian
Kaźmierczak-Bałata, Anna
García-Fernández, Javier
Bazioti, Calliope
Azarov, Alexander
Park, Ji-Hyeon
Jeon, Dae-Woo
Lee, Halin
Lee, Won-Jae
Zhu, Rui
Mei, Zengxia
Prytz, Øystein
Kuznetsov, Andrej
contents Gallium oxide is a novel advanced material gaining increasing attention for its unique combination of functional properties. It forms in several phases or polymorphs - α, β, γ, and κ - having variable properties because of different lattice symmetries. Optical properties are of particular importance as they determine specific device applications and can also be used for phase identification. However, a direct comparison of optical polymorph signatures, including such critical parameters as bandgaps, is challenging due to the scattered, limited, or even absent data for certain phases in the literature. To address this issue, in the present work we systematically cross-correlate optical emission and absorption features of α, β, γ, and κ thin films, as well as differently oriented β-phase bulk crystals and γ/β double polymorph structures. We demonstrate that the optical bandgap and emission features scale consistently across these polymorphs upon minimization of the methodological uncertainties. As a result, this work provides a comparative library of near- and far-field optical signatures of the polymorphs for use by the multidisciplinary research community working with gallium oxide.
format Preprint
id arxiv_https___arxiv_org_abs_2412_13987
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optical library of Ga2O3 polymorphs
Galeckas, Augustinas
Cernescu, Adrian
Kaźmierczak-Bałata, Anna
García-Fernández, Javier
Bazioti, Calliope
Azarov, Alexander
Park, Ji-Hyeon
Jeon, Dae-Woo
Lee, Halin
Lee, Won-Jae
Zhu, Rui
Mei, Zengxia
Prytz, Øystein
Kuznetsov, Andrej
Materials Science
Gallium oxide is a novel advanced material gaining increasing attention for its unique combination of functional properties. It forms in several phases or polymorphs - α, β, γ, and κ - having variable properties because of different lattice symmetries. Optical properties are of particular importance as they determine specific device applications and can also be used for phase identification. However, a direct comparison of optical polymorph signatures, including such critical parameters as bandgaps, is challenging due to the scattered, limited, or even absent data for certain phases in the literature. To address this issue, in the present work we systematically cross-correlate optical emission and absorption features of α, β, γ, and κ thin films, as well as differently oriented β-phase bulk crystals and γ/β double polymorph structures. We demonstrate that the optical bandgap and emission features scale consistently across these polymorphs upon minimization of the methodological uncertainties. As a result, this work provides a comparative library of near- and far-field optical signatures of the polymorphs for use by the multidisciplinary research community working with gallium oxide.
title Optical library of Ga2O3 polymorphs
topic Materials Science
url https://arxiv.org/abs/2412.13987