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Yamanouchi, Kaoru

Progress in Ultrafast Intense Laser Science

Yamanouchi, Kaoru - Progress in Ultrafast Intense Laser Science, ebook

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ISBN: 9783642350528
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Table of contents

1. Trajectory-Based Coulomb-Corrected Strong Field Approximation
T.-M. Yan, S. V. Popruzhenko, D. Bauer

2. The Role of Nuclear Vibrational Motion in Molecular High Harmonic Generation in a Mid-Infrared Laser Field
Ruxin Li, Yinghui Zheng, Zhinan Zeng, Pengfei Wei, Yuxin Leng, Zhizhan Xu

3. Attosecond Dynamics of Coherent Electron–Nuclear Wave Packets in Molecules
André D. Bandrauk, Timm Bredtmann, Szczepan Chelkowski

4. Gating Techniques for Shaping of Attosecond Pulses
Francesca Calegari, Candong Liu, Matteo Lucchini, Giuseppe Sansone, Mauro Nisoli

5. Transform-Limited Attosecond Pulse Generation Through Atto-Chirp Compensation by Material Dispersion
Chang Hee Nam, Kyung Taec Kim, Dong Hyuk Ko

6. Carrier-Envelope Phase Stabilization
Günter Steinmeyer, Bastian Borchers, Fabian Lücking

7. Probing and Controlling Autoionization Dynamics of Atoms with Attosecond Light Pulses
Wei-Chun Chu, Chii-Dong Lin

8. Attosecond Absorption Spectroscopy
Michael Chini, He Wang, Baozhen Zhao, Yan Cheng, Shouyuan Chen, Yi Wu, Zenghu Chang

9. Shot-by-Shot Photoelectron Spectroscopy of Rare Gas Atoms in Ultrashort Intense EUV Free-Electron Laser Fields
Mizuho Fushitani, Yasumasa Hikosaka, Akitaka Matsuda, Eiji Shigemasa, Akiyoshi Hishikawa

10. Rescattering Photoelectron Spectroscopy of Atoms and Molecules in Intense Laser Fields
Misaki Okunishi, Kiyoshi Ueda

11. Few-Femtosecond and Attosecond Electron Dynamics at Surfaces
Elisabeth Bothschafter, Stefan Neppl, Reinhard Kienberger

12. From Above-Threshold Photoemission to Attosecond Physics at Nanometric Tungsten Tips
M. Krüger, M. Schenk, J. Breuer, M. Förster, J. Hammer, J. Hoffrogge, S. Thomas, P. Hommelhoff

Keywords: Physics, Laser Technology, Photonics, Physical Chemistry, Optics and Electrodynamics, Applied and Technical Physics

Author(s)
 
Publisher
Springer
Publication year
2013
Language
en
Edition
2013
Series
Springer Series in Chemical Physics
Page amount
11 pages
Category
Natural Sciences
Format
Ebook
eISBN (PDF)
9783642350528

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