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F A HOPF Introduction to highenergy lasers
R BALESCU Laserfusion and laserplasma interactions
S SINGER C JAMES ELLIOTT J FIGUEIRA I LIBERMAN
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absorption alignment amplifier applied approximation assume atoms band beam becomes calculations chemical coefficient collision condition consider constant Course defined density depends derive described device discussion distribution edited effect efficiency electric electron emission energy equations example excitation extraction field flow flux frequency function fusion gain given gives increase initial intensity interaction kinetic laser length Lett levels light limit loss lower magnetic means measured mirror modes molecules motion Note obtain occur operation optical oscillator output pass Phys Physics plasma population possible pressure problem produced pulse pumping quantum radiation reaction region resonant result retropulse rotational saturation scattering separation shown in fig shows surface temperature threshold tion Torr transition vibrational wave wavelength width