
Charge and Energy Transfer Dynamics in Molecular Systems
Description
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Among the new topics are:
- Time-dependent density functional theory
- Heterogeneous electron transfer, e.g. between molecules and metal or semiconductor surfaces
- Current flows through a single molecule.
While serving as an introduction for graduate students and researchers, this is equally must-have reading for theoreticians and experimentalists, as well as an aid to interpreting experimental data and accessing the original literature.
Reviews / Votes
"A few months after the first edition of May and Kuehn's book was released, I met a Danish colleague at a conference in Montreux (on Lake Geneva). He had spent the weekend reading the book in his hotel room, despite the beautiful weather and nice sightseeing! This anecdote illustrates the sucess met by the first edition, and if you liked it, then you will like the second edition even more! ... the book provides a didactic and pedagogic presentation of molecular processes."
Prof. Majed Chergui, Laboratory of Ultrafast Spectroscopy, Ecole Polytechnique Fédérale de Lausanne, ChemPhysChem, 4/2005
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Persons
Oliver Kühn studied physics at Humboldt University, Berlin. After receiving his Ph.D. degree in Theoretical Physics in 1995, he worked as a postdoc first at the University of Rochester, USA, then at Lund University, Sweden. From 1997 to 2007, Prof. Kühn has been a senior researcher at the Institute of Chemistry, Free University Berlin, where he earned his habilitation in 2000. Since 2008 he is a Professor of Theoretical Physics at the University of Rostock. His current research interests lie in ultrafast spectroscopy and dynamics of condensed phase systems such as biomolecular hydrogen bonds and excitons in molecular aggregates.
Content
2 Electronic and Vibrational Molecular States
3 Dynamics of Isolated and Open Quantum Systems
4 Interaction of Molecular Systems with Radiation Fields
5 Vibrational Dynamics: Energy Redistribution, Relaxation, and Dephasing
6 Intramolecular Electronic Transitions
7 Electron Transfer
8 Proton Transfer
9 Excitation Energy Transfer
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