Photodissociation Dynamics : Spectroscopy and Fragmentation of Small Polyatomic Molecules
Book Details
Format
Paperback / Softback
ISBN-10
0521484146
ISBN-13
9780521484145
Publisher
Cambridge University Press
Imprint
Cambridge University Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
May 11th, 1995
Print length
436 Pages
Weight
69 grams
Dimensions
24.60 x 17.20 x 2.90 cms
Ksh 12,800.00
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This text elucidates the achievements in calculating photodissociation cross-sections and fragment state distributions from first principles. Topics covered include absorption spectra, diffuse vibrational structures, the vibrational and rotational state distributions.
Photodissociation induced by the absorption of single photons permits the detailed study of molecular dynamics such as the breaking of bonds, internal energy transfer and radiationless transitions. The availability of powerful lasers operating over a wide frequency range has stimulated rapid development of new experimental techniques which make it possible to analyse photodissociation processes in unprecedented detail. This text elucidates the achievements in calculating photodissociation cross-sections and fragment state distributions from first principles, starting from multi-dimensional potential energy surfaces and the Schrödinger equation of nuclear motion. Following an extended introduction in which the various types of observables are outlined, the book summarises the basic theoretical tools, namely the time-independent and the time-dependent quantum mechanical approaches as well as the classical picture of photodissociation. The discussions of absorption spectra, diffuse vibrational structures, the vibrational and rotational state distributions of the photofragments form the core of the book. More specific topics such as the dissociation of vibrationally excited molecules, emission during dissociation, or nonadiabatic effects are also discussed. It will be of interest to graduate students and senior scientists working in molecular physics, spectroscopy, molecular collisions and molecular kinetics.
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