身临其境的量子:量子技术教育中的 XR 系统文献综述

Ge Song, Xunan Wang, Rami Ghannam
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引用次数: 0

摘要

量子技术的最新进展迫切需要该领域的专业技术人才,因此需要创新的教育方法。本系统性文献综述调查了扩展现实(XR)(包括虚拟现实和增强现实)在量子技术教育中的整合情况。我们采用综合方法,包括细化搜索字符串、严格的纳入和排除标准以及人工筛选,分析了从主要数字图书馆中筛选出的 19 篇文章。我们的分析强调了 XR 技术在不同量子学科(主要是量子计算和量子化学)不同教育层次的应用,重点是大学教育。值得注意的是,我们的综述显示,设计开发研究占主导地位,实证研究很少,而作为基础框架的教育学习理论则严重缺失。此外,我们还发现了当前研究领域中的关键空白,包括对沉浸式设计元素和学习者参与策略的关注有限。研究结果指出了未来研究的新机遇,强调需要更多的实证研究、干预特点以及教育学习理论的全面整合。本综述可作为推进基于 XR 的量子教育、促进创新研究方向和形成有效教学实践的路线图。
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Immersive quantum: A systematic literature review of XR in quantum technology education
Recent advancements in quantum technology have created an urgent need for skilled professionals in this field, necessitating innovative educational approaches. This systematic literature review investigates the integration of Extended Reality (XR), including Virtual and Augmented Reality, in quantum technology education. We analyzed 19 shortlisted articles from major digital libraries using comprehensive methodologies, including refined search strings, rigorous inclusion and exclusion criteria as well as manual filtering. Our analysis highlights the application of XR technology across various quantum disciplines, predominantly quantum computing and quantum chemistry, at different educational levels, with a focus on university-level education. Notably, our review reveals a dominance of design-development research, a scarcity of empirical studies and a significant absence of educational learning theories as foundational frameworks. Additionally, we identify critical gaps in the current research landscape, including limited focus on immersive design elements and learner engagement strategies. The findings point towards emerging opportunities for future research, emphasizing the need for more empirical studies, intervention features and a holistic integration of educational learning theories. This review serves as a roadmap for advancing XR-based quantum education, fostering innovative research directions and shaping effective teaching practices.
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