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Terahertz wave parametric sources

机译:太赫兹波参数源

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We introduce several types of terahertz- (THz) wave parametric sources. THz-waves can be generated by optical parametric processes based on laser light scattering from the polariton mode of nonlinear crystals. Using parametric oscillation of MgO-doped LiNbO_3 crystal pumped by a nanosecond Q-switched Nd:YAG laser, we have realized broadband sources as well as coherent (narrow band) and widely tunable THz-wave sources. The THz-wave Parametric Generator (TPG) generates a broadband THz wave using a simple configuration; the THz-wave Parametric Oscillator (TPO) and the injection seeded THz-wave Parametric Generator (is-TPG) are two sources that generate coherent, widely tunable THz radiation by suitably controlling the idler wave. We report the characteristics of the oscillation and the radiation including linewidth and tunability. Further, we show the recent progress about these THz-wave parametric sources. We developed two new kinds of TPG by using compact pump sources. One TPG includes a flash-lamp-pumped multimode Nd:YAG laser with a top-hat beam profile, that allows generating high energy, broadband THz waves. Fitting in a space as small as 12 cm x 22 cm (including the pump source) this TPG outputs more than 100 pJ/pulse, which is about 100 times higher than the best results previously reported for TPG. The other has a potential to be a narrow-linewidth injection-seeded TPG, based on an laser-diode-pumped single-mode microchip Nd:YAG laser. The pump laser linewidth is below 0.009 nm and its size is 105x30x32 mm~3 . This allowed us to achieve a narrow-linewidth compact injection-seeded terahertz-wave parametric generator.
机译:我们介绍了几种类型的太赫兹(THz)波参数源。太赫兹波可以通过基于非线性晶体极化模式的激光散射,通过光学参数过程生成。利用由纳秒级Q开关Nd:YAG激光器泵浦的掺MgO的LiNbO_3晶体的参数振荡,我们已经实现了宽带源以及相干(窄带)和可广泛调谐的THz波源。太赫兹波参数发生器(TPG)使用简单的配置即可产生宽带太赫兹波。太赫兹波参量振荡器(TPO)和注入种子的太赫兹波参量发生器(is-TPG)是两个源,它们通过适当地控制惰波来产生相干的,可广泛调谐的太赫兹辐射。我们报告了振荡和辐射的特征,包括线宽和可调性。此外,我们显示了有关这些太赫兹波参数源的最新进展。我们使用紧凑型泵浦源开发了两种新型的TPG。一个TPG包括一个带顶帽光束轮廓的闪光灯泵浦多模Nd:YAG激光器,可产生高能宽带THz波。 TPG可以安装在12 cm x 22 cm的空间(包括泵浦源)中,输出功率超过100 pJ /脉冲,这比以前报道的TPG最佳结果高约100倍。另一个可能是基于激光二极管泵浦的单模微芯片Nd:YAG激光器的窄线宽注入种子TPG。泵浦激光器的线宽在0.009 nm以下,尺寸为105x30x32 mm〜3。这使我们能够实现窄线宽的紧凑型注入种子太赫兹波参数发生器。

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