Undergraduate setup for measuring the Bell inequalities and performing Quantum State Tomography

Raul Lahoz Sanz, Lidia Lozano Martín, Adrià Brú i Cortés, Martí Duocastella, Jose M. Gómez Cama, Bruno Juliá-Díaz
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Abstract

The growth of quantum technologies is attracting the interest of many students eager to learn concepts such as quantum entanglement or quantum superposition. However, the non-intuitive nature of these concepts poses a challenge to understanding them. Here, we present an entangled photon system which can perform a Bell test, i.e. the CHSH inequality, and can obtain the complete tomography of the two-photon state. The proposed setup is versatile, cost-effective and allows for multiple classroom operating modes. We present two variants, both facilitating the measurement of Bell inequalities and quantum state tomography. Experimental results showcase successful manipulation of the quantum state of the photons, achieving high-fidelity entangled states and significant violations of Bell's inequalities. Our setup's simplicity and affordability enhances accessibility for less specialized laboratories, allowing students to familiarize themselves with quantum physics concepts.
用于测量贝尔不等式和执行量子态层析成像的本科生装置
量子技术的发展吸引了许多渴望学习量子纠缠或量子叠加等概念的学生的兴趣。然而,这些概念的非直观性给理解它们带来了挑战。在这里,我们提出了一种纠缠光子系统,它可以执行贝尔测试,即 CHSH 不等式,并能获得双光子态的完整层析成像。所提出的装置用途广泛、成本低廉,并允许多种课堂操作模式。我们介绍了两种变体,它们都有助于测量贝尔不等式和量子态层析成像。实验结果表明,我们成功地操纵了光子的量子态,实现了高保真纠缠态和对贝尔不等式的显著违反。我们的装置既简单又经济实惠,使专业性不强的实验室更容易使用,让学生能够熟悉量子物理概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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