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Improving students' understanding of quantum mechanics via the Stern-Gerlach experiment

机译:通过Stern-Gerlach实验提高学生对量子力学的理解

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The Stern-Gerlach experiment can play an important role in teaching the formalism of quantum mechanics. In the context of a finite-dimensional Hilbert space students can learn how to prepare a specific quantum state starting from an arbitrary state, issues related to the time evolution of the wave function and quantum measurement. The Stern-Gerlach experiment can also be used to teach the distinction between the physical space where the experiment is performed and the Hilbert space where the state of the system lies, and how information about the state of the system in the Hilbert space can be exploited to interpret the possible outcomes of the experiment in physical space. Students can learn the advantages of choosing an appropriate basis to make predictions about the outcomes of experiments with different arrangements of Stern-Gerlach devices. The latter can also help students understand that an ensemble of identically prepared systems is not the same as a mixture. We discuss student difficulties with the Stern-Gerlach experiment based on written tests and interviews with advanced undergraduate and graduate students in quantum mechanics courses. We also discuss preliminary data which suggest that the Quantum Interactive Learning Tutorial on the Stern-Gerlach experiment is helpful in improving student understanding of these concepts.
机译:Stern-Gerlach实验可以在教授量子力学的形式主义方面发挥重要作用。在有限维希尔伯特空间的背景下,学生可以学习如何从任意状态开始准备特定的量子状态,与波函数的时间演化和量子测量有关的问题。 Stern-Gerlach实验还可以用于教授进行实验的物理空间和系统状态所在的希尔伯特空间之间的区别,以及如何利用希尔伯特空间中有关系统状态的信息解释物理空间中实验的可能结果。学生可以学习选择合适的基础以对使用Stern-Gerlach设备的不同布置进行的实验结果进行预测的优势。后者还可以帮助学生理解,相同准备的系统的集合与混合物是不同的。我们根据笔试和基于量子力学课程的高级本科生和研究生的访谈,通过Stern-Gerlach实验讨论学生的困难。我们还讨论了初步数据,这些数据表明Stern-Gerlach实验上的《量子交互式学习教程》有助于提高学生对这些概念的理解。

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