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Main Authors: Li, Zihan, Mazilu, Dan A., Mazilu, Irina
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2511.03696
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author Li, Zihan
Mazilu, Dan A.
Mazilu, Irina
author_facet Li, Zihan
Mazilu, Dan A.
Mazilu, Irina
contents Quantum computing offers a powerful new perspective on probabilistic and collective behaviors traditionally taught in statistical physics. This paper presents two classroom-ready modules that integrate quantum computing into the undergraduate curriculum using Qiskit: the quantum random walk and the Ising model. Both modules allow students to simulate and contrast classical and quantum systems, deepening their understanding of concepts such as superposition, interference, and statistical distributions. We outline the quantum circuits involved, provide sample code and student activities, and discuss how each example can be used to enhance student engagement with statistical physics. These modules are suitable for integration into courses in statistical mechanics, modern physics, or as part of an introductory unit on quantum computing.
format Preprint
id arxiv_https___arxiv_org_abs_2511_03696
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Introducing Quantum Computing into Statistical Physics: Random Walks and the Ising Model with Qiskit
Li, Zihan
Mazilu, Dan A.
Mazilu, Irina
Physics Education
Quantum Physics
Quantum computing offers a powerful new perspective on probabilistic and collective behaviors traditionally taught in statistical physics. This paper presents two classroom-ready modules that integrate quantum computing into the undergraduate curriculum using Qiskit: the quantum random walk and the Ising model. Both modules allow students to simulate and contrast classical and quantum systems, deepening their understanding of concepts such as superposition, interference, and statistical distributions. We outline the quantum circuits involved, provide sample code and student activities, and discuss how each example can be used to enhance student engagement with statistical physics. These modules are suitable for integration into courses in statistical mechanics, modern physics, or as part of an introductory unit on quantum computing.
title Introducing Quantum Computing into Statistical Physics: Random Walks and the Ising Model with Qiskit
topic Physics Education
Quantum Physics
url https://arxiv.org/abs/2511.03696