Published 1987 | Version v1
Book

Applications of the semiclassical spectral method to nuclear, atomic, molecular, and polymeric dynamics

  • 1. Dept. of Chemistry, Univ. of Nebraska at Omaha, Omaha, NE (USA)
  • 2. Oak Ridge National Lab., TN (USA)

Description

Nonlinear dynamics plays a dominant role in a variety of important problems in chemical physics. Examples are unimolecular reactions, infrared multiphoton decomposition of molecules, the pumping process of the gamma ray laser, dissociation of vibrationally excited state-selected van der Waals's complexes, and many other chemical and atomic processes. The present article discusses recent theoretical studies on the quasi-periodic and chaotic dynamic aspects of vibrational-rotational states of atomic, nuclear, and molecular systems using the semiclassical spectral method (SSM). The authors note that the coordinates, momenta, and so on, are found using classical mechanics in the studies included in this review. They outline the semiclassical spectral method and a wide variety of applications. Although this technique was first developed ten years ago, it has proved to be tremendously successful as a tool used in dynamics problems. Applications include problems in nonlinear dynamics, molecular and atomic spectra, surface science, astronomy and stellar dynamics, nuclear physics, and polymer physics

Additional details

Publishing Information

Publisher
The N.Y. Academy of Sciences.
Imprint Place
New York, NY (USA)
ISBN
0-89766-389-6
Imprint Title
Chaotic phenomena in astrophysics
Imprint Pagination
155 p.
Series
Annals of the New York Academy of Sciences. Volume 497.
Journal Page Range
p. 127-143.

Conference

Title
Chaotic phenomena in astrophysics.
Dates
9-10 Oct 1986.
Place
Gainesville, FL (USA).

Optional Information

Secondary number(s)
CONF-8610389--.