Phase Conjugate Laser Optics

Chapter 5.3.2.3 - Unidirectional non-phase-conjugated operation

5.3.2.3   Unidirectional non-phase-conjugated operation   When the laser
system is operated as a conventional regenerative amplifier system without SBS
phase conjugation, an input pulse from the oscillator enters the system by a
reflection off of a polarizing beam splitter placed in the ring as shown in Fig. 5.5.
Although the optical layout shown in Fig. 5.5 is that for the phase conjugated
system, only minor differences exist between the layout for conventional
unidirectional operation. The Pockels cell moves from the location shown to a
position inside the amplifier optical ring, replacing the 90o quartz rotator. The
deuterated potassium diphosphate (KD*P) gas-cooled Pockels cell uses 45o quartz
rotators as input and output windows so that it also has a passive 90o polarization
rotation with no voltage applied [30]. Therefore the s-polarized input beam is rotated
to p-polarization after passing through the Pockels cell. During the first ring
revolution, the half-wave (λ/2) voltage is applied to the Pockels cell crystals so that
further polarization rotation is prevented and the input pulse is trapped in the
regenerative amplifier ring until the voltage is removed. In this zigzag amplifier
design, near-normal input and output faces are used on the glass slab with either
sol–gel [31] or conventional dielectric antireflection (AR) coatings. This allows the
slab to be double passed in a “diamond” pattern as shown in Fig. 5.5 and either s- or
p-polarized beams can be amplified. When the Pockels cell voltage is switched back
to zero, the injected pulse makes one more ring pass in s-polarization, corresponding
to two more gain passes. The Pockels cell is therefore not required to transmit the
fully amplified output pulse energy, reducing the possibility of optical damage to the
KD*P. In this non-phase-conjugated geometry, the amplified output pulse exits the
system along the beam line that is shown in Fig. 5.5 to lead to the SBS mirror.

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