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双泵浦技术——向高效液基太赫兹源迈进了一步。

Double-pump technique - one step closer towards efficient liquid-based THz sources.

作者信息

Ponomareva Evgenia A, Tcypkin Anton N, Smirnov Semen V, Putilin Sergey E, Yiwen E, Kozlov Sergei A, Zhang Xi-Cheng

出版信息

Opt Express. 2019 Oct 28;27(22):32855-32862. doi: 10.1364/OE.27.032855.

DOI:10.1364/OE.27.032855
PMID:31684490
Abstract

By irradiating a water jet with double pulses, we demonstrate 4-fold higher THz wave generation than for a single pump pulse. The dependence of the enhanced THz signal on the temporal delay between two collinear pulses reveals the optimal time for launching signal pulse is near 2-4 ps, which corresponds to the time needed to create the complete pre-ionization state when sufficient electron density is already induced, and there is no plasma reflection of the pump pulse radiation. The increase in THz waves generation efficiency corresponds to the case of water jet excitation by the pulses with an optimal duration for a certain jet thickness, which is determined by the spatial pulse size. Using a theoretical model of the interaction of a high-intensity sub-picosecond pulse with an isotropic medium, we held a numerical simulation, which well describes the experimental results when using 3 ps value of population relaxation time. Thus, in this work, double pump method allows not only to increase the energy of the generated THz waves, but also to determine the characteristic excited state lifetime of liquid water. The optical-to-terahertz conversion efficiency in case of double pulse excitation of water column is of the order of 0.5⋅10 , which exceeds the typical values for THz waves generation during two-color filamentation in air and comparable with the achievable values due to the optical rectification in some crystals.

摘要

通过用双脉冲照射水射流,我们证明所产生的太赫兹波比单泵浦脉冲产生的太赫兹波高4倍。增强的太赫兹信号对两个共线脉冲之间时间延迟的依赖性表明,发射信号脉冲的最佳时间接近2 - 4皮秒,这对应于在已经诱导出足够电子密度且泵浦脉冲辐射不存在等离子体反射时创建完整预电离状态所需的时间。太赫兹波产生效率的提高对应于用具有特定射流厚度最佳持续时间的脉冲激发水射流的情况,该最佳持续时间由空间脉冲大小决定。使用高强度亚皮秒脉冲与各向同性介质相互作用的理论模型,我们进行了数值模拟,当使用3皮秒的粒子数弛豫时间值时,该模拟很好地描述了实验结果。因此,在这项工作中,双泵浦方法不仅允许增加所产生太赫兹波的能量,还能确定液态水的特征激发态寿命。水柱双脉冲激发情况下的光到太赫兹转换效率约为0.5⋅10 ,这超过了空气中双色成丝过程中太赫兹波产生的典型值,并且与某些晶体中通过光整流可实现的值相当。

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引用本文的文献

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Local measurement of terahertz field-induced second harmonic generation in plasma filaments.等离子体细丝中太赫兹场诱导二次谐波产生的局部测量。
Front Optoelectron. 2023 Dec 13;16(1):44. doi: 10.1007/s12200-023-00095-y.
2
Enhancement of Terahertz Emission by Silver Nanoparticles in a Liquid Medium.液体介质中银纳米颗粒对太赫兹辐射的增强作用。
Micromachines (Basel). 2023 Aug 13;14(8):1593. doi: 10.3390/mi14081593.
3
Terahertz aqueous photonics.太赫兹水基光子学。
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