This comprehensive, advanced, self-contained text provides the theoretical foundations for the processes affecting molecular dynamics in condensed phases that are encountered in the chemistry laboratory as well as in biology and material science research.
This comprehensive, advanced, self-contained text provides the theoretical foundations for the processes affecting molecular dynamics in condensed phases that are encountered in the chemistry laboratory as well as in biology and material science research.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Abraham Nitzan (b Israel in 1944) has worked Tel Aviv University since 1975 and is now a Professor of Chemistry and Donner Professor of Physical Science at the University of Pennsylvania. His research is focused on chemical and photochemical processes and charge and energy transfer in condensed phases and interfaces. Among his main recognitions are the Israel Chemical Society Prize (2004) and Medal (2015), the Emet Prize, the APS Plyler Prize, the ACS Theoretical Chemistry Prize and the Israel Prize in Chemistry. He is a member of the American Academy of Arts and Sciences, a Foreign Associate of the US National Academy of Sciences and a member of the Israel Academy of Arts and Sciences.
Inhaltsangabe
* PART I BACKGROUND * 1: Review of some mathematical and physical subjects * 2: Quantum dynamics using the time-dependent Schrödinger equation * 3: An overview of quantum electrodynamics {} and matter--radiation field interaction * 4: Introduction to solids * 5: Introduction to liquids * PART II METHODS * 6: Time-correlation functions * 7: Introduction to stochastic processes * 8: Stochastic equations of motion * 9: Introduction to quantum relaxation processes * 10: The quantum mechanical density operator {and its} time evolution: Quantum dynamics using the quantum Liouville equation * 11: Linear response theory * 12: The spin--boson model * PART III APPLICATIONS * 13: Vibrational energy relaxation * 14: Chemical reactions in condensed phases * 15: Solvation dynamics * 16: Electron transfer processes * 17: Electron transfer and transmission at molecule--metal and molecule--semiconductor interfaces * 18: Spectroscopy * 19: Molecular spectroscopy at dielectric interfaces * Index
* PART I BACKGROUND * 1: Review of some mathematical and physical subjects * 2: Quantum dynamics using the time-dependent Schrödinger equation * 3: An overview of quantum electrodynamics {} and matter--radiation field interaction * 4: Introduction to solids * 5: Introduction to liquids * PART II METHODS * 6: Time-correlation functions * 7: Introduction to stochastic processes * 8: Stochastic equations of motion * 9: Introduction to quantum relaxation processes * 10: The quantum mechanical density operator {and its} time evolution: Quantum dynamics using the quantum Liouville equation * 11: Linear response theory * 12: The spin--boson model * PART III APPLICATIONS * 13: Vibrational energy relaxation * 14: Chemical reactions in condensed phases * 15: Solvation dynamics * 16: Electron transfer processes * 17: Electron transfer and transmission at molecule--metal and molecule--semiconductor interfaces * 18: Spectroscopy * 19: Molecular spectroscopy at dielectric interfaces * Index
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