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arXiv:2012.11795 [math.CA]AbstractReferencesReviewsResources

Liouvillian solutions for second order linear differential equations with Laurent polynomial coefficient

Primitivo B. Acosta-Humánez, David Blázquez-Sanz, Henock Venegas-Gómez

Published 2020-12-22Version 1

This paper is devoted to a complete parametric study of Liouvillian solutions of the general trace-free second order differential equation with a Laurent polynomial coefficient. This family of equations, for fixed orders at $0$ and $\infty$ of the Laurent polynomial, is seen as an affine algebraic variety. We proof that the set of Picard-Vessiot integrable differential equations in the family is an enumerable union of algebraic subvarieties. We compute explicitely the algebraic equations of its components. We give some applications to well known subfamilies as the doubly confluent and biconfluent Heun equations, and to the theory of algebraically solvable potentials of Shr\"odinger equations. Also, as an auxiliary tool, we improve a previously known criterium for second order linear differential equations to admit a polynomial solution.

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