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Si-prism-array coupled terahertz-wave parametric oscillator with pump light totally reflected at the terahertz-wave exit surface

机译:硅棱镜阵列耦合的太赫兹波参量振荡器,泵浦光在太赫兹波出射面全反射

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A Si-prism-array coupled terahertz (THz)-wave parametric oscillator with the pump totally reflected at the THz-wave exit surface ( PR-Si-TPO) is demonstrated by manufacturing an 800 nm air gap between the crystal and the Si-prism array. Influence on the total reflection of the pump from the Si prisms is eliminated and efficient coupling of the THz wave is ensured by using this air gap. When the THz-wave frequency varies from 1.8 to 2.3 THz, compared with a Si-prism-array coupled TPO ( Si-TPO) with the pump transmitting through the crystal directly, the THz-wave output energy is enhanced by 20-50 times, and the oscillating threshold is reduced by 10%-35%. Furthermore, the high end of the THz-wave frequency tuning range of the PR-Si-TPO is expanded to 3.66 THz compared with 2.5 THz for the Si-TPO. (C) 2016 Optical Society of America
机译:通过在晶体和Si-Si晶体之间制造800 nm的空气间隙,展示了一个Si-棱镜阵列耦合的太赫兹(THz)波参量振荡器,其泵浦在THz-波出射面(PR-Si-TPO)处全反射。棱镜阵列。消除了硅棱镜对泵的全反射的影响,并通过使用该气隙确保了太赫兹波的有效耦合。当THz波频率从1.8到2.3 THz变化时,与通过泵直接通过晶体传输的Si棱镜阵列耦合TPO(Si-TPO)相比,THz波的输出能量提高了20到50倍,并且振荡阈值降低了10%-35%。此外,与Si-TPO的2.5 THz相比,PR-Si-TPO的THz波频率调谐范围的高端扩大到3.66 THz。 (C)2016美国眼镜学会

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