论文标题

液体酒精中高谐波产生的机制

The mechanism of high harmonic generation in liquid alcohol

论文作者

Alexander, Oliver, Barnard, Jonathan C. T., Larsen, Esben W., Avni, Timur, Jarosch, Sebastian, Ferchaud, Clement, Gregory, Andrew, Parker, Susan, Galinis, Gediminas, Tofful, Alexandra, Garratt, Douglas, Matthews, Mary R., Marangos, Jonathan P.

论文摘要

从超短激光脉冲[1]观察到固体中非扰动谐波发射[1]引发了一波研究[2,3],作为强场下固体中电荷载体动力学的探针和通往极端紫外线(XUV)Attosececond光子设备的途径[4]。液体中的高谐波产生(HHG)[5,6]与生物学培养基相关,但探索的探索程度却少得多,并且该机制受到了激烈的争论。使用低于分解阈值的几个周期脉冲,我们在酒精中证明了HHG,数据显示了载体 - eNvelope-phase依赖性XUV光谱,该光谱从异丙醇延伸至50 eV。我们通过其对驾驶场的依赖来研究谐波发射的机制,并发现它与强场重组机制是一致的。该地图将光子能量发射到电子轨迹上。我们探讨了液体环境在散射轨迹中的作用,并发现证据表明,在谐波光谱中编码了来自相邻分子的电子散射的信息。使用模拟,我们利用这一点来估计散射横截面,并确认与蒸气相比,液体异丙醇中的横截面显着降低。我们的发现表明,\ textit {原位}测量策略,用于检索液体中散射横截面的准确值,也是通往基于液体液体Attosecond Xuv设备的途径。

The observation of non-perturbative harmonic emission in solids from ultrashort laser pulses [1] sparked a wave of studies [2,3] as a probe of charge carrier dynamics in solids under strong fields and a route to extreme ultraviolet (XUV) attosecond photonic devices [4]. High harmonic generation (HHG) in liquids [5,6] is far less explored, despite their relevance to biological media, and the mechanism is hotly debated. Using few-cycle pulses below the breakdown threshold, we demonstrate HHG in alcohol with data showing carrier-envelope-phase-dependent XUV spectra extending to 50 eV from isopropanol. We study the mechanism of the harmonic emission through its dependence on the driving field and find it to be consistent with a strong-field recombination mechanism. This maps emitted photon energy to the electron trajectories. We explore the role of the liquid environment in scattering the trajectories and find evidence that information on electron scattering from neighbouring molecules is encoded in the harmonic spectra. Using simulations we exploit this to estimate the scattering cross section and we confirm that the cross-section in liquid isopropanol is significantly reduced compared to vapour. Our findings suggest an \textit{in situ} measurement strategy for retrieving accurate values of scattering cross sections in liquids, and also a pathway to liquid-based attosecond XUV devices.

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