English

Rational Solutions of the Painlev\'e-III Equation

Classical Analysis and ODEs 2018-01-16 v1 Mathematical Physics math.MP Exactly Solvable and Integrable Systems

Abstract

All of the six Painlev\'e equations except the first have families of rational solutions, which are frequently important in applications. The third Painlev\'e equation in generic form depends on two parameters mm and nn, and it has rational solutions if and only if at least one of the parameters is an integer. We use known algebraic representations of the solutions to study numerically how the distributions of poles and zeros behave as nZn\in\mathbb{Z} increases and how the patterns vary with mCm\in\mathbb{C}. This study suggests that it is reasonable to consider the rational solutions in the limit of large nZn\in\mathbb{Z} with mCm\in\mathbb{C} being an auxiliary parameter. To analyze the rational solutions in this limit, algebraic techniques need to be supplemented by analytical ones, and the main new contribution of this paper is to develop a Riemann-Hilbert representation of the rational solutions of Painlev\'e-III that is amenable to asymptotic analysis. Assuming further that mm is a half-integer, we derive from the Riemann-Hilbert representation a finite dimensional Hankel system for the rational solution in which nZn\in\mathbb{Z} appears as an explicit parameter.

Keywords

Cite

@article{arxiv.1801.04360,
  title  = {Rational Solutions of the Painlev\'e-III Equation},
  author = {Thomas Bothner and Peter D. Miller and Yue Sheng},
  journal= {arXiv preprint arXiv:1801.04360},
  year   = {2018}
}

Comments

34 pages, 16 figures