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XUV pump-probe experiments on diatom...
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Schnorr, Kirsten.
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XUV pump-probe experiments on diatomic molecules = tracing the dynamics of electron rearrangement and interatomic coulombic decay /
Record Type:
Electronic resources : Monograph/item
Title/Author:
XUV pump-probe experiments on diatomic molecules/ by Kirsten Schnorr.
Reminder of title:
tracing the dynamics of electron rearrangement and interatomic coulombic decay /
Author:
Schnorr, Kirsten.
Published:
Cham :Springer International Publishing : : 2015.,
Description:
xi, 191 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- Photoionization and Interatomic Coulombic Decay -- Free-Electron Lasers -- Experimental Setup -- Data Analysis -- Ionization Dynamics of I2 in XUV and IR Laser Pulses -- ICD Lifetime in Ne2 -- Conclusions and Outlook -- Appendices.
Contained By:
Springer eBooks
Subject:
Electrochemical analysis. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-12139-0
ISBN:
9783319121390 (electronic bk.)
XUV pump-probe experiments on diatomic molecules = tracing the dynamics of electron rearrangement and interatomic coulombic decay /
Schnorr, Kirsten.
XUV pump-probe experiments on diatomic molecules
tracing the dynamics of electron rearrangement and interatomic coulombic decay /[electronic resource] :by Kirsten Schnorr. - Cham :Springer International Publishing :2015. - xi, 191 p. :ill. (some col.), digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Introduction -- Photoionization and Interatomic Coulombic Decay -- Free-Electron Lasers -- Experimental Setup -- Data Analysis -- Ionization Dynamics of I2 in XUV and IR Laser Pulses -- ICD Lifetime in Ne2 -- Conclusions and Outlook -- Appendices.
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 (Ne2). 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.
ISBN: 9783319121390 (electronic bk.)
Standard No.: 10.1007/978-3-319-12139-0doiSubjects--Topical Terms:
671320
Electrochemical analysis.
LC Class. No.: QD115
Dewey Class. No.: 543.4
XUV pump-probe experiments on diatomic molecules = tracing the dynamics of electron rearrangement and interatomic coulombic decay /
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tracing the dynamics of electron rearrangement and interatomic coulombic decay /
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Introduction -- Photoionization and Interatomic Coulombic Decay -- Free-Electron Lasers -- Experimental Setup -- Data Analysis -- Ionization Dynamics of I2 in XUV and IR Laser Pulses -- ICD Lifetime in Ne2 -- Conclusions and Outlook -- Appendices.
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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 (Ne2). 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.
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Physics and Astronomy (Springer-11651)
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