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Attosecond and XUV Physics: Ultrafast Dynamics and Spectroscopy / Edition 1

Attosecond and XUV Physics: Ultrafast Dynamics and Spectroscopy / Edition 1

by Thomas Schultz, Marc Vrakking
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Product Details

ISBN-13: 9783527411245
Publisher: Wiley
Publication date: 02/03/2014
Pages: 624
Product dimensions: 5.90(w) x 9.10(h) x 1.10(d)

About the Author

Thomas Schultz coordinates scientific aspects of the ATTOFEL network. He graduated from ETH Zürich. After receiving his PhD in Chemistry he became a visiting Visiting Fellow at the Femtosecond Research Program in the National Research Council Canada. Since 2003 He is a Project leader at the Max Born Institute in Berlin. His research explores the photochemical elementary reactions in biologically relevant systems through ionization spectroscopy of molecules and clusters.

Marc Vrakking is Scientific Director of the Attoscience Group at the Max Born Institute in Berlin, Germany. He graduated in Physics and received his PhD in Chemistry from the University of California Berkeley, USA. He was a Professor of Physics at the University of Nijmegen, NL, and has served as group leader in XUV Physics at AMOLF. In 2010 he joined the Max Born Institute, and has been appointed Professor of Physics at the Free University of Berlin.

Table of Contents

Part I Laser Techniques
Ultrafast laser oscillators and amplifiers
Ultrashort- pulse characterization
Carrier- envelope phase stabilization
Towards tabletop x-ray lasers
Part II Theoretical methods
Ionization in strong low- frequency fields
Multielectron high harmonic generation: simple man on a complex plane
Time- dependent Schrödinger equation
Angular distribution in molecular photoionization
Part III High harmonic generation and attosecond pulses
High- order harmonic generation and attosecond light pulses
Strong- field interactions at long wavelengths
Attosecond dynamics in atoms
Attosecond processes in molecules
Attosecond electron dynamics in nanosystems
Part IV XUV and x-ray free electron laser experiments
Strong- field interactions at EUV and X-ray wavelengths
Ultra intense x- ray interactions at the Linac coherent light source
Coherent diffractive imaging

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