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JOURNALS // Symmetry, Integrability and Geometry: Methods and Applications // Archive

SIGMA, 2025 Volume 21, 097, 50 pp. (Mi sigma2213)

Rational Solutions of Painlevé V from Hankel Determinants and the Asymptotics of Their Pole Locations

Malik Balogoun, Marco Bertola

Department of Mathematics and Statistics, Concordia University, 1455 de Maisonneuve W., Montréal, Québec, H3G 1M8 Canada

Abstract: In this paper, we analyze the asymptotic behaviour of the poles of certain rational solutions of the fifth Painlevé equation. These solutions are constructed by relating the corresponding tau function to a Hankel determinant of a certain sequence of moments. This approach was also used by one of the authors and collaborators in the study of the rational solutions of the second Painlevé equation. More specifically, we study the roots of the corresponding polynomial tau function, whose location corresponds to the poles of the associated rational solution. We show that, upon suitable rescaling, the roots asymptotically fill a region bounded by analytic arcs when the degree of the polynomial tau function tends to infinity and the other parameters are kept fixed. Moreover, we provide an approximate location of these roots within the region in terms of suitable quantization conditions.

Keywords: Painlevé equations, rational solutions, asymptotic analysis, Riemann–Hilbert problems.

MSC: 33E17, 34M55, 33C47

Received: November 14, 2024; in final form October 28, 2025; Published online November 14, 2025

Language: English

DOI: 10.3842/SIGMA.2025.097


ArXiv: 2411.08853


© Steklov Math. Inst. of RAS, 2025