The Singularity of Legendre Functions of the First Kind as a Consequence of the Symmetry of Legendre’s Equation

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AI-generated summary by claude@2026-07, 2026-07-16

This paper argues that the symmetry of Legendre's equation's regular singular points mandates rejection of non-polynomial solutions in physics and explains how this symmetry also leads to the evenness or oddness of Legendre polynomials.

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Abstract

Legendre’s equation is key in various branches of physics. Its general solution is a linear function space, spanned by the Legendre functions of first and second kind. In physics however, commonly the only acceptable members of this set are the Legendre polynomials. Quantization of the eigenvalues of Legendre’s operator is a consequence of this. We present and explain a stand-alone, in-depth argument for rejecting all solutions of Legendre’s equation, but the polynomial ones, in physics. We show that the combination of the linearity, the mirror symmetry and the signature of the regular singular points of Legendre’s equation is quintessential to the argument. We demonstrate that the evenness or oddness of the Legendre polynomials is a consequence of the same ingredients.

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europepmc
last seen: 2026-05-19T01:45:01.086888+00:00
unpaywall
last seen: 2026-05-27T02:00:06.600101+00:00
License: CC-BY-4.0