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Energy Dissipation in Molecular Systems

Energy Dissipation in Molecular Systems analyzes experimental data on the redistribution and dissipation of energy injected into molecular systems by radiation or charged particles. These processes, competing with such practically important relaxation channels as chemical reaction or stimulated emis...

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Detalles Bibliográficos
Autores principales: Tramer, André, Jungen, Christian, Lahmani, Fran oise
Lenguaje:eng
Publicado: Springer 2005
Materias:
Acceso en línea:https://dx.doi.org/10.1007/b137820
http://cds.cern.ch/record/1250546
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author Tramer, André
Jungen, Christian
Lahmani, Fran oise
author_facet Tramer, André
Jungen, Christian
Lahmani, Fran oise
author_sort Tramer, André
collection CERN
description Energy Dissipation in Molecular Systems analyzes experimental data on the redistribution and dissipation of energy injected into molecular systems by radiation or charged particles. These processes, competing with such practically important relaxation channels as chemical reaction or stimulated emission (laser action), are the primary focus in this monograph. Among other topics, the book treats vibrational redistribution and electronic relaxation in isolated molecules and the effects of inter-molecular interactions (collisions, complex formation, solvent effects) on the relaxation paths. Primary photo-chemical processes (such as isomerization, proton or hydrogen-atom transfer, electron transfer and ionization) are also treated as particular cases of vibrational or electronic relaxation. Only a basic knowledge of quantum mechanics and spectroscopy is assumed and calculations are kept to a strict minimum, making the book more accessible to students.
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spelling cern-12505462021-04-22T01:29:10Zdoi:10.1007/b137820http://cds.cern.ch/record/1250546engTramer, AndréJungen, ChristianLahmani, Fran oiseEnergy Dissipation in Molecular SystemsChemical Physics and ChemistryEnergy Dissipation in Molecular Systems analyzes experimental data on the redistribution and dissipation of energy injected into molecular systems by radiation or charged particles. These processes, competing with such practically important relaxation channels as chemical reaction or stimulated emission (laser action), are the primary focus in this monograph. Among other topics, the book treats vibrational redistribution and electronic relaxation in isolated molecules and the effects of inter-molecular interactions (collisions, complex formation, solvent effects) on the relaxation paths. Primary photo-chemical processes (such as isomerization, proton or hydrogen-atom transfer, electron transfer and ionization) are also treated as particular cases of vibrational or electronic relaxation. Only a basic knowledge of quantum mechanics and spectroscopy is assumed and calculations are kept to a strict minimum, making the book more accessible to students.Springeroai:cds.cern.ch:12505462005
spellingShingle Chemical Physics and Chemistry
Tramer, André
Jungen, Christian
Lahmani, Fran oise
Energy Dissipation in Molecular Systems
title Energy Dissipation in Molecular Systems
title_full Energy Dissipation in Molecular Systems
title_fullStr Energy Dissipation in Molecular Systems
title_full_unstemmed Energy Dissipation in Molecular Systems
title_short Energy Dissipation in Molecular Systems
title_sort energy dissipation in molecular systems
topic Chemical Physics and Chemistry
url https://dx.doi.org/10.1007/b137820
http://cds.cern.ch/record/1250546
work_keys_str_mv AT tramerandre energydissipationinmolecularsystems
AT jungenchristian energydissipationinmolecularsystems
AT lahmanifranoise energydissipationinmolecularsystems