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Atoms, Solids, and Plasmas in Super-Intense Laser Fields

✍ Scribed by Gérard A. Mourou (auth.), Dimitri Batani, Charles J. Joachain, Sergio Martellucci, Arthur N. Chester (eds.)


Publisher
Springer US
Year
2001
Tongue
English
Leaves
409
Edition
1
Category
Library

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✦ Synopsis


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 phenomena occur, such as the very rapid multi photon ionization of atomic systems, the emission by these systems of very high order harmonics of the exciting laser light, the Coulomb explosion of molecules, and the acceleration of electrons close to the velocity of light. These phenomena generate new behaviour of bulk matter in intense laser fields, with great potential for wide ranging applications which include the study of ultra-fast processes, the development of high-frequency lasers, and the investigation of the properties of plasmas and condensed matter under extreme conditions of temperature and pressure. In particular, the concept of the "fast ignitor" approach to inertial confinement fusion (ICF) has been proposed, which is based on the separation of the compression and the ignition phases in laser-driven ICF. The aim of this course on "Atom, Solids and Plasmas in Super-Intense Laser fields" was to bring together senior researchers and students in atomic and molecular physics, laser physics, condensed matter and plasma physics, in order to review recent developments in high-intensity laser-matter interactions. The course was held at the Ettore Majorana International Centre for Scientific Culture in Erice from July 8 to July 14,2000.

✦ Table of Contents


Front Matter....Pages i-xi
Ultraintense Lasers and their Applications....Pages 1-13
Theory of Multiphoton Ionization of Atoms....Pages 15-36
Experiments of Multiphoton Dissociation and Ionization of Molecules....Pages 37-58
Two-Color and Single-Color above Threshold Ionisation....Pages 59-81
High-Order Harmonic Generation....Pages 83-97
Clusters in Intense Laser Fields....Pages 99-118
Introduction to Laser-Plasma Interaction and Its Applications....Pages 119-144
Experimental Study of Petawatt Laser Produced Plasmas....Pages 145-166
Relativistic Laser Plasma Interaction....Pages 167-192
Dense Ultrafast Plasmas....Pages 193-231
Magnetic Fields and Solitons in Relativistic Plasmas....Pages 233-247
R-Matrix-Floquet Theory of Two-Electron Atoms in Intense Laser Fields....Pages 249-259
Intense-Field Many-Body S-Matrix Theory: Application to Recoil-Momentum Distributions for Laser-Induced Double Ionization....Pages 261-272
Electrons and Ions in Relativistic Laser Fields....Pages 273-283
The Classical and the Quantum Face of Above-Threshold Ionization....Pages 285-301
Relativistic Effects in Non-Linear Atom-Laser Interactions at Ultrahigh Intensities....Pages 303-313
Plasmas at Solid State Density Generated by Ultra-Short Laser Pulses....Pages 315-326
Shock Wave Experiments and Equation of State of Dense Matter....Pages 327-337
Laser Particle Acceleration in Plasmas....Pages 339-350
Elliptic Dichroism in Angular Distributions in Free-Free Transitions in Hydrogen....Pages 351-356
Shock Electromagnetic Waves Resulting from Higher Harmonics Generation in Transparent Solids....Pages 357-362
Study of Fast Electron Propagation in Ultra-Intense Laser Pulse Interaction with Solid Targets Using Rear Side Optical Self-Radiation and Reflectivity-Based Diagnostics....Pages 363-373
Demonstration of a Hybridly Pumped Soft X-Ray Laser....Pages 375-380
X-Ray Emission from Laser Irradiated Structured Gold Targets....Pages 381-387
Measurement of Spectral and Angular Distribution of Hard X-Rays from Laser Produced Plasmas and their Application....Pages 389-394
Equation of State of Water in the Megabar Range....Pages 395-400
XUV Interferometry Using High Order Harmonics: Application to Plasma Diagnostics....Pages 401-406
Back Matter....Pages 407-412

✦ Subjects


Optics, Optoelectronics, Plasmonics and Optical Devices;Electrical Engineering;Nuclear Physics, Heavy Ions, Hadrons;Theoretical, Mathematical and Computational Physics;Atomic, Molecular, Optical and Plasma Physics


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