
Principles of Nonlinear Optical Spectroscopy
Oxford University Press | January 15, 1995 | ISBN-10: 0195092783 | 543 pages | PDF | 3.7 MB
This textbook presents a methodical and unifying viewpoint for a wide class of nonlinear spectroscopic techniques in time empire and frequency domain. It is directed towards active researchers in science of energy, optics, chemistry, a>nd materials science, as well as graduate students who enter this complex and rapidly developing field.
Nonlinear optical interactions of laser fields by matter provide powerful spectroscopic tools for the understanding of microscopic interactions and dynamic processes. One of the greater obstacles facing researchers in this field, however, is the flood of supported by experiment techniques and terminologies, which create a serious language barrier. The vague microscopic correlation function approach to the nonlinear optical response developed in this volume is essential for understanding the relationships among different techniques and a comparison of their information content, the design of new measurements, and as being a systematic comparison of the optical response of different systems so as dyes in solutions, atoms and molecules in the gas aspect, liquids, molecular aggregates and superlatives, and semiconductor nanostructures. The approach is based in successi~ formulating the nonlinear response by representing the state of matter ~ means of the density matrix and following its evolution on Liouville space. Current sprightly research areas such as femtosecond time-domain techniques, semi-classical and float-packet dynamics, pulse shaping, pulse locking, exciton confinement, and the reciprocal action of electronic, nuclear and field coherence are emphasized.
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