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基于注入种子技术、中心频率为0.87太赫兹的可调谐太赫兹波参量振荡器。

Tunable backward terahertz-wave parametric oscillator centered at a high frequency of 0.87 THz with injection seeding.

作者信息

Muldera Joselito E, Nawata Kouji, Takida Yuma, Yadav Deepika, Minamide Hiroaki

出版信息

Opt Express. 2023 Jul 17;31(15):23966-23973. doi: 10.1364/OE.494232.

Abstract

We report the first demonstration of a frequency tunable backward THz-wave parametric oscillator (BW-TPO) centered at a high frequency of 0.87 THz using a slant-stripe-type magnesium oxide-doped periodically poled lithium niobate (PPLN) crystal as the nonlinear medium. Down-converted THz and idler beams generate upon excitation of the PPLN with a sub-nanosecond pulsed source of λ = 1064.44 nm. The resulting first idler has a wavelength of 1067.75 nm, equivalent to an oscillation frequency of 0.872 THz as per the spectral line separation from the pump. We also present angle tuning of the BW-TPO frequency ranging from 0.836-0.905 THz through PPLN rotation. The threshold pump intensity for BW-TPO is determined to be 5.6 GW/cm while obtaining a conversion efficiency as high as 12.3% at a pump energy (intensity) of 15.25 mJ (8.90 GW/cm). A reduction of the BW-TPO threshold energy and improved pump-to-idler energy conversion efficiency resulted from injection seeding with a CW laser at the same wavelength as the first idler. The THz output is also directly proportional to seed power.

摘要

我们报道了首次展示的频率可调谐太赫兹波参量振荡器(BW-TPO),它以倾斜条纹型掺氧化镁的周期性极化铌酸锂(PPLN)晶体作为非线性介质,中心频率为0.87太赫兹。当用波长λ = 1064.44 nm的亚纳秒脉冲源激发PPLN时,会产生下转换的太赫兹波和闲频光束。由此产生的第一闲频光波长为1067.75 nm,根据与泵浦光的谱线间隔,其振荡频率相当于0.872太赫兹。我们还展示了通过PPLN旋转实现的BW-TPO频率在0.836 - 0.905太赫兹范围内的角度调谐。BW-TPO的阈值泵浦强度确定为5.6 GW/cm²,在泵浦能量(强度)为15.25 mJ(8.90 GW/cm²)时,转换效率高达12.3%。用与第一闲频光波长相同的连续波激光进行注入种子源,使得BW-TPO的阈值能量降低,泵浦到闲频光的能量转换效率提高。太赫兹输出也与种子源功率成正比。

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