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Geometric Structures of Phase Space in Multi-Dimensional Chaos: Applications to Chemical Reaction Dynamics in Complex Systems, Part A, Volume 130

Geometric Structures of Phase Space in Multi-Dimensional Chaos: Applications to Chemical Reaction Dynamics in Complex Systems, Part A, Volume 130

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Description

This series provides the chemical physics field with a forum for critical, authoritative evaluations of advances in every area of the discipline. Volume 130 in the series continues to report recent advances with significant, up-to-date chapters by internationally recognized researchers.
PART I PHASE-SPACE GEOMETRY OF MULTIDIMENSIONAL DYNAMICAL SYSTEMS AND REACTION PROCESSES.

Chapter 1 Classical, Semiclassical, and Quantum Mechanical Unimolecular Reaction Rate Theory (Meishan Zhao, Jiangbin Gong, and Stuart A. Rice).

Chapter 2 Regularity in Chaotic Transitions on Two-Basin Landscapes (Tamiki Komatsuzaki and R. Stephen Berry).

Chapter 3 A New Look at the Transition State: Wigner’s Dynamical Perspective Revisited (Charles Jaffe´, Shinnosuke Kawai, Jesus Palacian, Patricia Yanguas, and Turgay Uzer).

Chapter 4 Geometry of Phase-Space Transition States: Many Dimensions, Angular Momentum (Laurent Wiesenfeld).

Chapter 5 Intramolecular Dynamics Along Isomerization and Dissociation Pathways (Marc Joyeux, Sergy Yu. Grebenshchikov, Jens Bredenbeck, Reinhard Schinke, and Stavros C. Farantos).

Chapter 6 Classical Coulomb Three-Body Problem (Mitsusada M. Sano).

Chapter 7 Global Aspects of Chemical Reactions in Multidimensional Phase Space (Mikito Toda).

Chapter 8 Classical Mechanism of Multidimensional Barrier Tunneling (Kinya Takahashi and Kensuke S. Ikeda).

Chapter 9 Coarse-Grained Picture for Controlling Quantum Chaos (Toshiya Takami, Hiroshi Fujisaki, and Takayuki Miyadera).

Author Index.

Subject Index.