A new teaching-learning sequence to promote secondary school students’ learning of quantum physics using Dirac notation

Q3 Social Sciences Physics Education Pub Date : 2024-04-25 DOI:10.1088/1361-6552/ad353d
Fabian Hennig, Kristóf Tóth, Moritz Förster and Philipp Bitzenbauer
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Abstract

This paper describes the design of a new teaching-learning sequence on quantum physics aimed at upper secondary school students. In this teaching-learning sequence, GeoGebra simulations and interactive screen experiments are used to investigate the behaviour of a single photon at beam splitter and single photon interference in a Michelson interferometer. We propose a minimal formalism using Dirac notation, which avoids complex numbers and elaborate vector calculus, to make a quantitative description of the quantum optics experiments accessible to secondary school students. With this new educational pathway, we take into account findings from physics education research, which suggest that the introduction of a mathematical formalism tailored to students’ abilities might help them to overcome naive-realist views of quanta or space-time descriptions of quantum phenomena, while at the same time facilitating a transition to a functional understanding of quantum models.
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利用狄拉克符号促进中学生学习量子物理的新教学序列
本文介绍了针对高中学生的量子物理新教学序列的设计。在这个教学序列中,我们利用 GeoGebra 仿真和交互式屏幕实验来研究单光子在分光镜中的行为和单光子在迈克尔逊干涉仪中的干涉。我们提出了一种使用狄拉克符号的最小形式主义,它避免了复数和复杂的矢量微积分,使中学生能够对量子光学实验进行定量描述。物理教育研究表明,引入适合学生能力的数学形式主义,可以帮助他们克服对量子或量子现象时空描述的天真现实主义观点,同时促进他们过渡到对量子模型的功能性理解。
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来源期刊
Physics Education
Physics Education Social Sciences-Education
CiteScore
1.50
自引率
0.00%
发文量
195
期刊介绍: Physics Education seeks to serve the physics teaching community and we welcome contributions from teachers. We seek to support the teaching of physics to students aged 11 up to introductory undergraduate level. We aim to provide professional development and support for teachers of physics around the world by providing: a forum for practising teachers to make an active contribution to the physics teaching community; knowledge updates in physics, educational research and relevant wider curriculum developments; and strategies for teaching and classroom management that will engage and motivate students.
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