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New Class of Efficient Terahertz Generators: Effective Terahertz Spectral Filling by Complementary Tandem Configuration of Nonlinear Organic Crystals

机译:新型高效太赫兹发生器:通过非线性有机晶体的互补串联配置有效进行太赫兹光谱填充

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摘要

Intense table-top terahertz (THz) sources, which have progressed tremendously in the last decade, are becoming more important for advanced THz science to study light-matter interactions and subsequent applications. Nonlinear optical organic crystals exhibit great potential for intense broadband THz wave generation due to their large nonlinearities and advantageous phase-matching characteristics. However, the phonon-induced absorption of most organic crystals in the THz region leads to undesired modulation of the spectrum and limits the THz output efficiency. To overcome such drawbacks, phonon-mode engineering by modification of molecular structures is suggested, but intrinsic limitations still remain. Here, an efficient alternative approach has been recently proposed for generating intense broadband THz waves based on a tandem configuration that combines two complementary nonlinear organic crystals. Such configuration compensates for the spectral gap of the generated THz waves mainly caused by phonon absorption and additionally enhances the optical-to-THz conversion efficiency. The proposed organic tandem generator indicates a substantial enhancement of the peak-to-peak THz electric field due to effective spectral filling at phonon absorption gaps. As a result, such tandem configuration provides a versatile platform to generate gapless broadband THz spectra with suppressed phonon absorption and contributes to advancing the development of intense broadband coherent THz sources.
机译:在过去的十年中,巨大的台式太赫兹(THz)光源取得了长足的进步,对于先进的太赫兹科学来说,研究光与物质的相互作用及其后续应用正变得越来越重要。非线性光学有机晶体由于其较大的非线性和有利的相位匹配特性,具有产生巨大的宽带太赫兹波的巨大潜力。但是,声子在太赫兹区域内对大多数有机晶体的吸收会导致对光谱的不良调制,并限制了太赫兹的输出效率。为了克服这些缺点,提出了通过改变分子结构的声子模式工程,但是仍然存在固有的局限性。在此,近来提出了一种有效的替代方法,该方法基于将两个互补的非线性有机晶体结合在一起的串联配置来产生强烈的宽带太赫兹波。这样的配置补偿了主要由声子吸收引起的所产生的太赫兹波的频谱间隙,并且还提高了光-太赫兹转换效率。所提出的有机串联发生器表明,由于声子吸收间隙处的有效光谱填充,峰峰值THz电场得到了显着增强。结果,这种串联配置提供了一个通用平台,可生成具有抑制声子吸收的无间隙宽带THz频谱,并有助于推进强宽带相干THz源的开发。

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