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Titlebook: XUV Pump-Probe Experiments on Diatomic Molecules; Tracing the Dynamics Kirsten Schnorr Book 2015 Springer International Publishing Switzerl

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书目名称XUV Pump-Probe Experiments on Diatomic Molecules
副标题Tracing the Dynamics
编辑Kirsten Schnorr
视频video
概述Nominated as an outstanding Ph.D. thesis by Max Planck Institute for Nuclear Physics, Heidelberg, Germany.Introductory chapters with numerous clear illustrations make the topic accessible to non-exper
丛书名称Springer Theses
图书封面Titlebook: XUV Pump-Probe Experiments on Diatomic Molecules; Tracing the Dynamics Kirsten Schnorr Book 2015 Springer International Publishing Switzerl
描述This book explores the relaxation dynamics of inner-valence-ionized diatomic molecules on the basis of extreme-ultraviolet pump-probe experiments performed at the free-electron laser (FEL) in Hamburg. Firstly, the electron rearrangement dynamics in dissociating multiply charged iodine molecules is studied in an experiment that made it possible to access charge transfer in a thus far unexplored quasimolecular regime relevant for plasma and chemistry applications of the FEL. Secondly the lifetime of an efficient non-radiative relaxation process that occurs in weakly bound systems is measured directly for the first time in a neon dimer (Ne.2.). Interatomic Coulombic decay (ICD) has been identified as the dominant decay mechanism in inner-valence-ionized or excited van-der-Waals and hydrogen bonded systems, the latter being ubiquitous in all biomolecules. The role of ICD in DNA damage thus demands further investigation, e.g. with regard to applications like radiation therapy.
出版日期Book 2015
关键词Efficient Non-radiative Relaxation Process; Electron Rearrangment Dynamics; Excited van-der-Waals and
版次1
doihttps://doi.org/10.1007/978-3-319-12139-0
isbn_softcover978-3-319-36555-8
isbn_ebook978-3-319-12139-0Series ISSN 2190-5053 Series E-ISSN 2190-5061
issn_series 2190-5053
copyrightSpringer International Publishing Switzerland 2015
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Book 2015ce-ionized or excited van-der-Waals and hydrogen bonded systems, the latter being ubiquitous in all biomolecules. The role of ICD in DNA damage thus demands further investigation, e.g. with regard to applications like radiation therapy.
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Kirsten SchnorrNominated as an outstanding Ph.D. thesis by Max Planck Institute for Nuclear Physics, Heidelberg, Germany.Introductory chapters with numerous clear illustrations make the topic accessible to non-exper
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