Divergent Series, Summability And Resurgence Iii: Resurgent Methods And The First Painleve Equation by Eric Delabaere

Divergent Series, Summability And Resurgence Iii: Resurgent Methods And The First Painleve Equation

byEric Delabaere

Hardcover | June 29, 2016

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The aim of this volume is two-fold. First, to show how the resurgent methods introduced in volume 1 can be applied efficiently in a non-linear setting; to this end further properties of the resurgence theory must be developed. Second, to analyze the fundamental example of the First Painlevé equation. The resurgent analysis of singularities is pushed all the way up to the so-called "bridge equation", which concentrates all information about the non-linear Stokes phenomenon at infinity of the First Painlevé equation.

The third in a series of three, entitledDivergent Series, Summability and Resurgence, this volume is aimed at graduate students, mathematicians and theoretical physicists who are interested in divergent power series and related problems, such as the Stokes phenomenon. The prerequisites are a working knowledge of complex analysis at the first-year graduate level and of the theory of resurgence, as presented in volume 1. 
Title:Divergent Series, Summability And Resurgence Iii: Resurgent Methods And The First Painleve EquationFormat:HardcoverProduct dimensions:230 pages, 9.25 X 6.1 X 0 inShipping dimensions:230 pages, 9.25 X 6.1 X 0 inPublished:June 29, 2016Publisher:Springer-Verlag/Sci-Tech/TradeLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:3319289993

ISBN - 13:9783319289991

Appropriate for ages: All ages

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Table of Contents

Avant-Propos.- Preface to the three volumes.- Preface to this volume.- Some elements about ordinary differential equations.- The first Painlevé equation.-  Tritruncated solutions for the first Painlevé equation.- A step beyond Borel-Laplace summability.- Transseries and formal integral for the first Painlevé equation.- Truncated solutions for the first Painlevé equation.- Supplements to resurgence theory.- Resurgent structure for the first Painlevé equation.- Index.