Lectures on Ultrafast Intense Laser Science 1
Springer Science & Business Media, Dec 17, 2010 - Technology & Engineering - 314 pages
This book features tutorial-like chapters on ultrafast intense laser science by world-leading scientists who are active in the rapidly developing interdisciplinary research field. It is written to give a comprehensive survey of all the essential aspects of ultrafast intense laser science. The volume covers theories of atoms and molecules in intense laser fields, high intensity physics scaled to long wavelength, pulse shaping techniques, non-linear optics in the XUV region, ultrafast X-ray spectroscopy, quantum emission and applications, filamentation, and ultraintense-laser matter interaction.
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absorption adiabatic attosecond attosecond pulses calculation classical Coulomb density diagram dipole approximation dissociation domain double ionization dynamics effect electric field electron EXAFS experiment experimental F.H.M. Faisal femtosecond filament fluorescence focused Fourier frequency gauge transformation Giulietti Hamiltonian high harmonic high-order harmonics IMST initial intense laser field intense-field interaction ionization rate irradiation Keldysh parameter laboratory laser field Lett measurements multiphoton nonlinear nonlinear optical observed obtained optical optimization peak phase mask photoelectron photon photon energy Phys physics plasma polarization ponderomotive energy potential prepulse propagation pulse duration pulse shaping pump quantum radiation region relativistic rescattering S-matrix S.L. Chin scale Schršodinger equation self-focusing shown in Fig shows simulation soft x-ray spatial spectra spectrum strong-field structure target technique temporal theory time-dependent adiabatic time-resolved tion transition amplitude tunnel ionization two-photon ultrashort ultrashort pulses velocity gauge vibrational wave function wavelength X-ray diffraction