Phase Conjugate Laser Optics

Chapter 5.3.3.2 - SBS amplifier/oscillator configuration

5.3.3.2   SBS amplifier/oscillator configuration  For input energies >1 J/
pulse, we have found that a two-cell system configured in an oscillator/amplifier
arrangement becomes useful [11, 12]. As depicted in the optical layout of Fig. 5.5,
the collimated input beam is directed through the first SBS cell and then focused into
a second cell. In this way the peak optical power in the focused oscillator cell is
reduced by the depletion of the pump wave in the collimated amplifier cell. The
beam size in the collimated cell is nominally adjusted such that the peak Brillouin
gain, irradiance, and length product (gIL) is <30, the threshold for stimulated return
from that cell alone. In practice, however, it is found that very efficient amplification
in the first cell is achieved with a calculated peak gIL product of ~ 45. Even at this
large value, no spontaneous SBS contribution is observed from the amplifier cell
since depletion of the incoming laser pump pulse prevents the gain product from
reaching the estimated value.

Another consideration in configuring the SBS oscillator/amplifier system is the
round-trip optical propagation length in the SBS medium. This should not greatly
exceed τB for the SBS material. In this case, when the SBS system is driven high
above threshold, strong pulse reshaping in the Stokes return in the form of pulse
compression can result. For input pulses of sufficient duration, periodic modulation
with a period corresponding to the round-trip time through the SBS cells is observed.
In this amplifier system, the input beam was configured with an area of ~ 1 cm2
(8 × 12 mm2) through a 33-cm amplifier cell. It was then focused into the oscillator
cell with a 14-cm focal length lens. Although saturation in the amplifier cell allows
attenuation to be added in front of the oscillator cell without a great penalty in
energy efficiency, it was not found to be necessary up to an input energy of 3 J in a
pulse width of 15 ns.

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