eBook Advances in Superprocesses and Nonlinear PDEs, 1st Edition

  • Published By:
  • ISBN-10: 1461462401
  • ISBN-13: 9781461462408
  • DDC: 515.353
  • Grade Level Range: College Freshman - College Senior
  • 124 Pages | eBook
  • Original Copyright 2013 | Published/Released June 2014
  • This publication's content originally published in print form: 2013
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Sergei Kuznetsov is one of the top experts on measure valued branching processes (also known as "superprocesses") and their connection to nonlinear partial differential operators. His research interests range from stochastic processes and partial differential equations to mathematical statistics, time series analysis and statistical software; he has over 90 papers published in international research journals. His most well known contribution to probability theory is the ’Kuznetsov-measure.’ A conference honoring his 60th birthday has been organized at Boulder, Colorado in the summer of 2010, with the participation of Sergei Kuznetsov’s mentor and major co-author, Eugene Dynkin. The conference focused on topics related to superprocesses, branching diffusions and nonlinear partial differential equations. In particular, connections to the so-called "Kuznetsov-measure" were emphasized. Leading experts in the field as well as young researchers contributed to the conference. The meeting was organized by J. Englander and B. Rider (U. of Colorado).

Table of Contents

Front Cover.
Other Frontmatter.
Springer Proceedings in Mathematics & Statistics.
Title Page.
Copyright Page.
Other Frontmatter.
1: Markov Processes and Their Applications to Partial Differential Equations: Kuznetsov's Contributions.
2: Stochastic Equations on Projective Systems of Groups.
3: Modeling Competition Between Two Influenza Strains.
4: Asymptotic Results for Near Critical Bienaymé–Galton–Watson and Catalyst-Reactant Branching Processes.
5: Some Path Large-Deviation Results for a Branching Diffusion.
6: Longtime Behavior for Mutually Catalytic Branching with Negative Correlations.
7: Super-Brownian Motion: Lp-Convergence of Martingales Through the Pathwise Spine Decomposition.