<p>The recent developement of high power lasers, delivering femtosecond pulses of 20 2 intensities up to 10 W/cm , has led to the discovery of new phenomena in laser interactions with matter. At these enormous laser intensities, atoms, and molecules are exposed to extreme conditions and new phenomen
Laser Interactions with Atoms, Solids and Plasmas
β Scribed by AndrΓ© Mysyrowicz (auth.), Richard M. More (eds.)
- Publisher
- Springer US
- Year
- 1994
- Tongue
- English
- Leaves
- 476
- Series
- NATO ASI Series 327
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
The aim of this NATO Advanced Study Institute was to bring together scientists and students working in the field of laser matter interactions in order to review and stimulate developmentoffundamental science with ultra-short pulse lasers. New techniques of pulse compression and colliding-pulse mode-locking have made possible the construction of lasers with pulse lengths in the femtosecond range. Such lasers are now in operation at several research laboratories in Europe and the United States. These laser facilities present a new and exciting research direction with both pure and applied science components. In this ASI the emphasis is on fundamental processes occurring in the interaction of short laser pulses with atoms, molecules, solids, and plasmas. In the case of laser-atom (molecule) interactions, high power lasers provide the first access to extreme high-intensity conditions above 10'8 Watts/em', a new frontier for nonlinear interaction of photons with atoms and molecules. New phenomena observed include multiphoton ionization processes, atomic collisions in the presence of a strong laser field, Coulomb explosion following rapid ionization of a molecule and the production of high harmonics of the laser source. Another important topic reviewed in this ASI is the lasercooling ofatoms.
β¦ Table of Contents
Front Matter....Pages i-viii
High Intensity Lasers....Pages 1-9
Recent Aspects of Multiphoton Ionization of Atoms....Pages 11-38
Theory of Laser-Atom Interactions....Pages 39-94
Harmonic Generation at High Intensities....Pages 95-105
Comparison of Kinetic Energy Distributions of C 2+ Ionic Fragments Induced by Multiphoton Ionization and Fast Ion Impact from CO 2 ....Pages 107-111
Resonant Degenerate Four-Wave Mixing....Pages 113-122
Semiclassical Calculation of Atomic Processes....Pages 123-161
Experiments on Rydberg Wave Packets....Pages 163-192
Laser Manipulation of Neutral Atoms....Pages 193-206
Second Harmonic Production from Solid Targets....Pages 207-237
Raman Study of Laser-Induced Structure Modifications of Ion-Amorphized Silicon....Pages 239-248
Properties of Condensed Matter Under Planetary Interior Conditions Measured by Femtosecond Spectroscopy....Pages 249-271
Absorption Spectroscopy of Compressed Matter....Pages 273-309
Density Functional and Non-Equilibrium Methods for Unusual States of Matter Produced Using Short-Pulse Lasers....Pages 311-324
Theory of Complex Spectra from Laser Plasmas....Pages 325-355
Influence of the Prepulse on the X-Ray Yield of a Subpicosecond Laser-Produced Plasma....Pages 357-366
Model Calculations of H-Like Recombination Schemes....Pages 367-381
Theory of Plasma Wave Absorption....Pages 383-436
Parametric Instabilities in Picosecond Time Scales....Pages 437-474
Back Matter....Pages 475-477
β¦ Subjects
Electrical Engineering; Solid State Physics; Spectroscopy and Microscopy; Condensed Matter Physics; Crystallography; Optical and Electronic Materials
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