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Main Authors: Tsutsui, Thiago T., Silva, Edilberto O., de Castro, Antonio S. M., Andrade, Fabiano M.
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2504.17797
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author Tsutsui, Thiago T.
Silva, Edilberto O.
de Castro, Antonio S. M.
Andrade, Fabiano M.
author_facet Tsutsui, Thiago T.
Silva, Edilberto O.
de Castro, Antonio S. M.
Andrade, Fabiano M.
contents This paper offers educational insight into the Dirac equation, examining its historical context and contrasting it with the earlier Schrödinger and Klein-Gordon (KG) equations. The comparison highlights their Lorentz transformation symmetry and potential probabilistic interpretations. We explicitly solve the free-particle dynamics in Dirac's model, revealing the emergence of negative-energy solutions. This discussion examines the Dirac Sea Hypothesis and explores the solutions' inherent helicity. Additionally, we demonstrate how the Dirac equation accounts for spin and derive the Pauli equation in the non-relativistic limit. The Foldy-Wouthuysen transformation reveals how the equation incorporates spin-orbit interaction and other relativistic effects, ultimately leading to the fine structure of hydrogen. A section on relativistic covariant notation is included to emphasize the invariance of the Dirac equation, along with more refined formulations of both the KG and Dirac equations. Designed for undergraduate students interested in the Dirac equation, this resource provides a historical perspective without being purely theoretical. Our approach underscores the significance of a pedagogical method that combines historical and comparative elements to profoundly understand the role of the Dirac equation in modern physics.
format Preprint
id arxiv_https___arxiv_org_abs_2504_17797
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Dirac equation: historical context, comparisons with the Schrödinger and Klein-Gordon equations, and elementary consequences
Tsutsui, Thiago T.
Silva, Edilberto O.
de Castro, Antonio S. M.
Andrade, Fabiano M.
General Physics
This paper offers educational insight into the Dirac equation, examining its historical context and contrasting it with the earlier Schrödinger and Klein-Gordon (KG) equations. The comparison highlights their Lorentz transformation symmetry and potential probabilistic interpretations. We explicitly solve the free-particle dynamics in Dirac's model, revealing the emergence of negative-energy solutions. This discussion examines the Dirac Sea Hypothesis and explores the solutions' inherent helicity. Additionally, we demonstrate how the Dirac equation accounts for spin and derive the Pauli equation in the non-relativistic limit. The Foldy-Wouthuysen transformation reveals how the equation incorporates spin-orbit interaction and other relativistic effects, ultimately leading to the fine structure of hydrogen. A section on relativistic covariant notation is included to emphasize the invariance of the Dirac equation, along with more refined formulations of both the KG and Dirac equations. Designed for undergraduate students interested in the Dirac equation, this resource provides a historical perspective without being purely theoretical. Our approach underscores the significance of a pedagogical method that combines historical and comparative elements to profoundly understand the role of the Dirac equation in modern physics.
title The Dirac equation: historical context, comparisons with the Schrödinger and Klein-Gordon equations, and elementary consequences
topic General Physics
url https://arxiv.org/abs/2504.17797