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Multicycle terahertz pulse generation by optical rectification in LiNbO<sub>3</sub>, LiTaO<sub>3</sub>, and BBO crystals

Dogeun Jang, Ki-Yong Kim

2020Optics Express25 citationsDOIOpen Access PDF

Abstract

We report multicycle, narrowband, terahertz radiation at 14.8 THz produced by phase-matched optical rectification of femtosecond laser pulses in bulk lithium niobate (LiNbO 3 ) crystals. Our experiment and simulation show that the output terahertz energy greatly enhances when the input laser pulse is highly chirped, contrary to a common optical rectification process. We find this abnormal behavior is attributed to a linear electro-optic (EO) effect, in which the laser pulse propagating in LiNbO 3 is modulated by the terahertz field it produces, and this in turn drives optical rectification more effectively to produce the terahertz field. This resonant cascading effect can greatly increase terahertz conversion efficiencies when the input laser pulse is properly pre-chirped with additional third order dispersion. We also observe similar multicycle terahertz emission from lithium tantalate (LiTaO 3 ) at 14 THz and barium borate (BBO) at 7 THz, 10.6 THz, and 14.6 THz, all produced by narrowband phase-matched optical rectification.

Topics & Concepts

Optical rectificationTerahertz radiationOpticsMaterials scienceLaserOptoelectronicsFemtosecondPhotomixingFar-infrared laserLithium niobateTerahertz time-domain spectroscopyTerahertz spectroscopy and technologyTerahertz gapOptical pumpingLithium borateBarium borateNonlinear opticsLithium tantalateNarrowbandPulse (music)NeodymiumEnergy conversion efficiencyOptical amplifierLaser pumpingRectificationQ-switchingTerahertz technology and applicationsLaser-Matter Interactions and ApplicationsPhotorefractive and Nonlinear Optics