AlN中氧杂质及其对光吸收的影响

IF 3.6 2区 物理与天体物理 Q2 PHYSICS, APPLIED Applied Physics Letters Pub Date : 2025-02-11 DOI:10.1063/5.0234655
Qimin Yan, John L. Lyons, Luke Gordon, Anderson Janotti, Chris G. Van de Walle
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引用次数: 0

摘要

氧是氮化铝样品中常见的杂质。利用杂化密度泛函计算,研究了取代氧(ON)在光吸收中的作用。我们构建了ON及其相关配合物的构型配位图。我们的研究结果表明,涉及ON−(一个DX中心)的光学跃迁产生了峰值为2.22 eV的吸收带,这表明它是在含氧样品中观察到的开始于~ 2 eV的吸收带的来源。我们还提出可以形成中性的ON-DX配合物,这将在3.06 eV处产生吸收峰。此外,我们发现,尽管氧具有DX特性,但它可能表现为“光学浅供体”,并参与从深缺陷态到导带的光学跃迁。这一观察结果为AlN样品在可见光和紫外线(UV)区观察到的光学吸收带提供了另一种物理机制。
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Oxygen impurities in AlN and their impact on optical absorption
Oxygen is a common impurity in AlN samples. Using hybrid density functional calculations, we investigate the role of substitutional oxygen (ON) in the optical absorption. We construct configuration coordination diagrams for ON and related complexes. Our results indicate that an optical transition involving ON− (a DX center) gives rise to an absorption band peaked at 2.22 eV, suggesting it is a source of the absorption band with an onset at ∼ 2 eV observed in oxygen-containing samples. We also propose that neutral ON–DX complexes can form, which would give rise to absorption peaking at 3.06 eV. In addition, we find that oxygen, in spite of its DX character, may behave as an “optically shallow donor” and be involved in optical transitions from deep defect states to the conduction band. This observation provides an alternative physical mechanism for the optical absorption bands observed in AlN samples in the visible and ultraviolet (UV) region.
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来源期刊
Applied Physics Letters
Applied Physics Letters 物理-物理:应用
CiteScore
6.40
自引率
10.00%
发文量
1821
审稿时长
1.6 months
期刊介绍: Applied Physics Letters (APL) features concise, up-to-date reports on significant new findings in applied physics. Emphasizing rapid dissemination of key data and new physical insights, APL offers prompt publication of new experimental and theoretical papers reporting applications of physics phenomena to all branches of science, engineering, and modern technology. In addition to regular articles, the journal also publishes invited Fast Track, Perspectives, and in-depth Editorials which report on cutting-edge areas in applied physics. APL Perspectives are forward-looking invited letters which highlight recent developments or discoveries. Emphasis is placed on very recent developments, potentially disruptive technologies, open questions and possible solutions. They also include a mini-roadmap detailing where the community should direct efforts in order for the phenomena to be viable for application and the challenges associated with meeting that performance threshold. Perspectives are characterized by personal viewpoints and opinions of recognized experts in the field. Fast Track articles are invited original research articles that report results that are particularly novel and important or provide a significant advancement in an emerging field. Because of the urgency and scientific importance of the work, the peer review process is accelerated. If, during the review process, it becomes apparent that the paper does not meet the Fast Track criterion, it is returned to a normal track.
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