Publication | Open Access
Broadband and high power terahertz pulse generation beyond excitation bandwidth limitation via χ^(2) cascaded processes in LiNbO_3
49
Citations
20
References
2009
Year
Thz PhotonicsTerahertz TechnologyEngineeringThz FieldTerahertz PhotonicsOptical AmplifierTerahertz PhysicsGeneration TechniquePulse PowerFiber LaserPhotonicsElectrical EngineeringTerahertz SpectroscopyPhysicsHigh-frequency DeviceTerahertz ScienceTerahertz DevicesApplied PhysicsTerahertz TechniqueTerahertz ApplicationsOptoelectronicsExcitation Bandwidth LimitationThz TechnologiesFibre Amplifier
We proposed a novel THz generation technique beyond the limitation of the input optical pulse width, based on phase modulation via cascaded chi((2)) process. When intense THz electric field generated by optical rectification lies in electro-optic (EO) crystal, emitted THz field gives phase modulation to the optical excitation pulse. The phase modulation causes excitation pulse narrowing and consequently gives rise to the enhancement of conversion efficiency and THz wave bandwidth broadening. We experimentally realize this generation technique with high chi((2)) EO crystal LiNbO(3) and with subpicosecond pulse from Yb-doped fiber laser. It opens new concept of THz technologies.
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