SPIE Optics and PhotonicsTeaching Quantum Entanglement with Glowing Model Qubits
Sohum Thakkar, Andrew Chen, Ozer Ozdemir, Akhil Katuri, Roger Mao · 2026 · SPIE Optics and Photonics · 16 pages
Abstract
Entanglement is a foundational feature of quantum mechanics, yet learners typically encounter it only as a formula or loose analogy. We present two hands-on activities for teaching entanglement, both built on a model qubit: a handheld spherical LED display that renders qubit states in real time. Learners interact by rotating and shaking the device. Paired devices share a single statevector over a wireless link so that two-qubit correlations can be explored directly. The first activity is an outreach demonstration that captures the essence of the Bell paradox and is engaging for children as young as elementary school. The second is a two-and-a-half-hour workshop in which high schoolers and undergraduates act as experimentalists, building a theory of the qubit from their own measurement tallies. In addition, we offer a three-level categorization of quantum knowledge which avoids common misleading analogies and remains faithful to the science. We report a deployment of the outreach activity for 250 students at the Invent the Future expo in Bethesda, Maryland, and deployments of the workshop in the QCaMP high school training program and the BERQ undergraduate training program.
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