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      Extreme Superposition: Rogue Waves of Infinite Order and the Painlev\'e-III Hierarchy

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          Abstract

          We study the fundamental rogue wave solutions of the focusing nonlinear Schr\"odinger equation in the limit of large order. Using a recently-proposed Riemann-Hilbert representation of the rogue wave solution of arbitrary order \(k\), we establish the existence of a limiting profile of the rogue wave in the large-\(k\) limit when the solution is viewed in appropriate rescaled variables capturing the near-field region where the solution has the largest amplitude. The limiting profile is a new particular solution of the focusing nonlinear Schr\"odinger equation in the rescaled variables --- the rogue wave of infinite order --- which also satisfies ordinary differential equations with respect to space and time. The spatial differential equations are identified with certain members of the Painlev\'e-III hierarchy. We compute the far-field asymptotic behavior of the near-field limit solution and compare the asymptotic formul\ae\ with the exact solution with the help of numerical methods for solving Riemann-Hilbert problems. In a certain transitional region for the asymptotics the near field limit function is described by a specific globally-defined tritronqu\'ee solution of the Painlev\'e-II equation. These properties lead us to regard the rogue wave of infinite order as a new special function.

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          Author and article information

          Journal
          01 June 2018
          Article
          1806.00545
          3f934017-f0e7-44e7-9c33-2903c2f2ad08

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          35Q55, 35Q15, 35Q51, 37K10, 37K15, 37K40, 34M55
          55 pages, 27 figures
          nlin.SI math.AP math.CA nlin.PS

          Analysis,Nonlinear & Complex systems,Mathematics
          Analysis, Nonlinear & Complex systems, Mathematics

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