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Titlebook: Energy Transfer Processes in Condensed Matter; Baldassare Bartolo Book 1984 Plenum Press, New York 1984 Potential.band structure.condensed

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Introduction to Energy Transfer and Relevant Solid-State Conceptsmal or hot electrons leading to energy transfer, respectively, by capture or collisional excitation are introduced. A glossary of terms relevant to electronic energy transfer completes this introductory chapter.
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Dynamical Models Of Energy Transfer in Condensed Matterng centers and establish the decay laws due to trapping. We find that trapping shows a rich time dependence and that the onset of the asymptotic behavior for diffusion and for trapping may occur on widely different time scales.
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Time-Resolved Studies of Energy Transferd the methods used to connect the experimental results to these physical properties through theoretical interpretation of the data are discussed. Several examples are given of different types of projects involving time-resolved studies of energy transfer.
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Energy Transfer in Semiconductors of energy from a photon-field in vacuum through the surface into a semiconductor, the propagating modes of light in a semiconductor (the socalled polaritons), the transfer of energy from exciton-polaritons to the phonon field and finally the transfer of energy from one exciton-polariton mode to oth
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Triplet Excitation Transfer Studies in Organic Condensed Matter via Cooperative Effectsctronic excitation energy without transport of charge. Of special interest are the metastable paramagnetic triplet excitations which are known to travel during their lifetime over macroscopic distances. These excitations exhibit cooperative effects, notably triplet-triplet pair annihilation which le
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