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SPECTROSCOPY A Narrow Resonances and Precision
Picosecond Nonlinear Optics
Narrow Resonances Induced in an Absorbing
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A. M. Prokhorov absorbed absorption length approximately atoms beryllium birefringence bremsstrahlung Brillouin scattering calculations capacitor cell chemical reaction collisional collisions conversion efficiencies curve decay dissociation distribution dye laser effect emission energy transfer equations equilibrium excited experimental experiments field Figure filament fluorescence flux foci frequency fusion gas-dynamic heat infrared intensity ionization Kerr effect kinetic laser beam laser energy laser level laser light laser pulse laser radiation lasing light pulses magnetic main pulse measured mirror mode mode-locked molecular molecules nonlinear nonlinear optics nsec observed obtained optical output peak photodissociation photofragment photon capacitor photon engine Phys picosecond pulses plasma population inversion pressure produced psec pulse duration pump radius rays reactor refraction refractive index relaxation resonant ruby laser self-focusing shown in Fig spectral spectroscopy spectrum Stokes pulse technique thermal thermonuclear tion transient transition tunable two-photon velocity vibrational wavelength x rays x-ray