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This is the first of a series of books on Ultrafast Intense Laser Science, a newly emerging interdisciplinary research field that spans atomic and molecular physics, molecular science, and optical science. It covers intense VUV laser-cluster interaction, resonance and chaos-assisted tunneling, and the effects of the carrier-envelope phase on high-order harmonic generation.
Stabilization of Atoms in a Strong Laser Field.- Creation of Novel Quasi-Bound States in High-Frequency Intense Laser Fields.- Multielectron Effects of Diatomic Molecules in Strong Laser Fields.- Strong-Field Correlation Imaging: Revealing Molecular Geometries, Orientation and Dynamics.- First-Principles Density-Functional Approach for Many-Electron Dynamics Under Intense Laser Fields.- Plasma Physics in the Strong Coupling Regime: Intense VUV Laser-Cluster Interaction.- Resonance- and Chaos-Assisted Tunneling.- Effects of Carrier-Envelope Phase of Few-Cycle Pulses on High-Order Harmonic Generation.- Short-Pulse Laser-Produced Plasmas.- Ultraintense Electromagnetic Radiation in Plasmas.- Unusual Optical Properties of the Dense Nonequilibrium Plasma.- Radiative Recombination in a Strong Laser Field.- Femtosecond Filamentation in Air.- Pulse Self-Compression in the Nonlinear Propagation of Intense Femtosecond Laser Pulse in Normally Dispersive Solids.- Ultraintense Tabletop Laser System and Plasma Applications.- Induction of Permanent Structure in Transparent Materials by Ultrafast Laser and Application to Photonic Devices.
Cote Robin, COTE ROBIN, Winthrop W Smith, Robin Cote, Phillip L Gould, Michael G Rozman, Pierre Agostini, Usa) Smith, Winthrop W (Univ Of Connecticut, Usa) Cote, Robin (Univ Of Connecticut, Usa) Gould, Phillip L (Univ Of Connecticut, Usa) Rozman, Michael G (Univ Of Connecticut, Usa) Agostini, Pierre (The Ohio State University