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Terahertz Generation from Quasi-Phase Matched Gallium Arsenide using a Type-II Ring Cavity Optical Parametric Oscillator

机译:使用II型环形腔光学参量振荡器从准相位匹配的砷化镓生成太赫兹

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Resonant cavity enhancement results in substantial improvement in the efficiency of photonic THz-wave generation via difference frequency generation (DFG). A nearly degenerate optical parametric oscillator (OPO) was pumped by 6 ps pulses at 1064 nm, producing signal and idler pulses with average total power in excess of 80 W. By placing a sample of quasi-phasematched gallium arsenide (QPM-GaAs) at a focus of a ring cavity OPO, multicycle, narrowband THz radiation was produced, with average powers in excess of 100 μW and peak powers exceeding 150 mW. The dependence of the THz power on pump power shows no signs of saturation, so with higher power pump lasers, mW levels of average THz should be obtainable.
机译:谐振腔的增强通过差频产生(DFG)大大提高了光子太赫兹波产生效率。几乎退化的光学参量振荡器(OPO)在1064 nm处被6 ps脉冲泵浦,产生平均总功率超过80 W的信号和空转脉冲。通过将准相匹配砷化镓(QPM-GaAs)样品置于产生了环形腔OPO的焦点,多周期,窄带THz辐射,其平均功率超过100μW,峰值功率超过150 mW。太赫兹功率对泵浦功率的依赖性没有饱和迹象,因此,使用更高功率的泵浦激光器,应可获得mW的平均太赫兹水平。

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