Pulse slicing and two-pass amplification are investigated as a means of producing high-energy subnanosecond pulses in the near ultraviolet. A simple laboratory-scale XeCl oscillator–Pockels cell pulse slicer–amplifier system is used to produce 50-mJ pulses of subnanosecond duration at 308 nm. Comparison of multinanosecond and subnanosecond pulse amplification allows estimation of the amplifier energy storage time to be 5 ns and demonstrates nearly complete extraction of available stored energy by the subnanosecond pulse.
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Pacala et al. (1980) studied this question.
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