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Titlebook: Relaxation of Elementary Excitations; Proceedings of the T Ryogo Kubo,Eiichi Hanamura Conference proceedings 1980 Springer-Verlag Berlin He

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Vibronic Spectra of Molecular Crystals: Dynamic Theory and Comparison with Experimentrgy spectrum and the absorption spectrum in the vibronic region, provided that the exciton band is narrow, as compared with the phonon frequency. This criterion is fulfilled, e.g., in aromatic molecular crystals (benzene and so on). The dynamic theory is closely connected with the theory of local ex
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Relaxation Study in the Extremely Short Time Region by Stationary and Transient Nonlinear Optical Sp 10. s. They are all based on the third-order nonlinear optical processes in resonant media with two kinds of input light beams. Both the frequency-domain (stationary) and time-domain (transient) methods are developed with particular emphasis on the measurement of dephasing time T.. Resonant Rayleig
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Thermodynamics and Transient Dynamics of Simple Optical Systems with Instability give rise to a dissipation of energy of the system given up to its heat reservoir, but not in a simple fashion. For example, the threshold of a laser oscillation must be a phase transition associated with an unusual situation of such heat transfers. A natural way to approach the problems is the met
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New Photon-Echo Phenomena in a Localized-Electron Phonon Systemise because of the reversibility of the decay of the phonon wave-packet, and their formation is independent of the inhomogeneous broadening of spectral line due to the spatial crystalline field inhomogeneity.
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Infrared Laser Chemistryrational excitation rather than electronic transitions. It has been firmly established during the past few years that polyatomic molecules can absorb sufficient energy from an infrared laser pulse that a true unimolecular reaction takes place without benefit of collisions. This may be a dissociation
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