Publication | Open Access
High conversion efficiency, high energy terahertz pulses by optical rectification in cryogenically cooled lithium niobate
225
Citations
16
References
2013
Year
High Conversion EfficiencyThz PhotonicsOptical MaterialsTerahertz TechnologyEngineeringLaser ApplicationsThz AbsorptionTerahertz PhotonicsHigh-power LasersOptical RectificationTerahertz PhysicsOptical PropertiesCooled Lithium NiobatePulse PowerOptical PumpingPhotonicsTerahertz SpectroscopyPhysicsTerahertz NetworkTerahertz ScienceTerahertz DevicesLithium Niobate CrystalApplied PhysicsTerahertz TechniqueEfficient TerahertzOptoelectronicsTerahertz Applications
We demonstrate highly efficient terahertz (THz) generation by optical rectification (OR) of near-optimum pump pulses centered at 1.03 μm in cryogenically cooled lithium niobate. Using a close to optimal pulse duration of 680 fs and a pump energy of 1.2 mJ, we report conversion efficiencies above 3.8±0.4%, which is more than an order of magnitude higher than previously reported. The results confirm the advantage of using cryogenic cooling of the lithium niobate crystal that significantly reduces the THz absorption, enabling the scaling of THz pulse energies to the millijoule level via OR.
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