Publication | Closed Access
Nonlinear pulse compression in a gas-filled multipass cell
84
Citations
26
References
2018
Year
Optical MaterialsEngineeringMultipass CellMid-infrared Laser TechnologySuper-intense LasersFiber OpticsHigh-power LasersFiber-optic CommunicationOptical AmplifierShort-pulse LasersCompressible FlowOptical PropertiesCompression (Physics)Nonlinear Pulse CompressionPulse PowerSpectral BroadeningUltra-short LasersFiber LaserPhotonicsPulse GenerationPhysicsNonlinear Signal ProcessingMultiphase FlowApplied PhysicsW Average PowerFibre Amplifier
We present an efficient method for compressing sub-picosecond pulses at 200 W average power with 2 mJ pulse energy in a multipass cell filled with different gases. We demonstrate spectral broadening by more than a factor of five using neon, argon, and nitrogen as nonlinear media. The 210 fs input pulses are compressed down to 37 fs and 35 GW peak power with a beam quality factor of 1.3×1.5 at a power throughput of >93%. This concept represents an excellent alternative to hollow-core fiber-based compression schemes and optical parametric amplifiers (OPAs).
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