Phase Conjugate Laser Optics

Chapter 5.3.4.3 - Average power operation

5.3.4.3   Average power operation  In the present configuration of this
flashlamp-pumped Nd:glass amplifier system, the lamps can be pulsed at repetition
rates of up to 6 Hz with 2.5 kJ of deposited electrical energy per pulse without
reaching the stress fracture limit of the amplifier glass. When the laser amplifier
system is operated in the SBS phase conjugated configuration, the near-field
irradiance distribution and far-field divergence described in the previous section is
maintained up to this full pulse repetition frequency. In fact, in an experiment in
which the amplifier slab was intentionally thermally loaded above 6 Hz,
near-diffraction-limited output divergence was preserved up to the last laser
pulses before the slab fractured. The amplifier system has been operated for periods
exceeding 1 hr with average output power above 150 W. Figure 5.12 illustrates
continuous records of laser pulse energies between 25 J and 27 J for 4-, 5-, and 6-Hz
operation. The temporal profile of the amplified output pulses is characterized by a
smooth, unmodulated envelope without a steep leading edge that would be


Figure 5.12. Measured energy for each laser pulse (25–27 J) for continuous operation at 4, 5, and 6 Hz. The amplifier system has been continuously operated for periods exceeding 1 hr with average output power above 150 W.


Figure 5.13. The plot of (a) a single temporal waveform as well as (b) that of ~1800 superimposed waveforms collected at 4 Hz. The overlaid pulses were accumulated in the infinite persistence mode of a digital storage oscilloscope.


characteristic of significant temporal reshaping in the phase conjugator. The plot of a
single temporal waveform as well as that of ~ 1800 superimposed waveforms
collected at 4 Hz are shown in Fig. 5.13.

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