论文标题

有效的极端脱甲虫从激光漆成二氧化硅中的高阶高阶波混合

Efficient extreme-ultraviolet high-order wave mixing from laser-dressed silica

论文作者

Abbing, Sylvianne D. C. Roscam, Campi, Filippo, de Keijzer, Brian, Morice, Corentin, Zhang, Zhuang-Yan, van der Geest, Maarten L. S., Kraus, Peter M.

论文摘要

在强烈的激光 - 脉冲照射下从固体\ cite \ cite {ghimire11a,schubert14a,luu15a,golde08a}中排放的发射正在彻底改变我们对强场地固体相互作用的理解\ cite {ghimire11a,schubert14a,luu15a,vampa15b,yoshikawa17a,hafez18a,jurgens20a},同时向小说,全柔软,柔性,相干,短波台式餐桌供应量和量身定制的供应量和裁缝式供应量,并供应途径控制\ cite {franz19a,roscamcleo21}。 To date, broadband spectra have been generated well into the extreme-ultraviolet (XUV) \cite{luu15a,luu18b,han19a,uzan20a}, but the comparatively low conversion efficiency still lags behind gas-based high-harmonic generation (HHG) sources \cite{luu15a,luu18b}, and have hindered更广泛的应用程序。在这里,我们通过两色波混合来克服低转化效率。量子理论表明,我们的实验遵循一种新颖的生成机制,在该机制中,传统的频带和内映射非线性动力学通过floquet-bloch装饰状态增强,从而使XUV中的固体HHG至少提高了一个数量级。遵循扰动光波混合的发射强度尺度,结合发射频率的角度分离,使我们的方法成为全固体相干XUV源的决定性步骤,并用于研究轻型材料。

The emission of high-order harmonics from solids \cite{ghimire11a,schubert14a,luu15a,golde08a} under intense laser-pulse irradiation is revolutionizing our understanding of strong-field solid-light interactions \cite{ghimire11a,schubert14a,luu15a,vampa15b,yoshikawa17a,hafez18a,jurgens20a}, while simultaneously opening avenues towards novel, all-solid, coherent, short-wavelength table-top sources with tailored emission profiles and nanoscale light-field control\cite{franz19a,roscamCLEO21}. To date, broadband spectra have been generated well into the extreme-ultraviolet (XUV) \cite{luu15a,luu18b,han19a,uzan20a}, but the comparatively low conversion efficiency still lags behind gas-based high-harmonic generation (HHG) sources \cite{luu15a,luu18b}, and have hindered wider-spread applications. Here, we overcome the low conversion efficiency by two-color wave mixing. A quantum theory reveals that our experiments follow a novel generation mechanism where the conventional interband and intraband nonlinear dynamics are boosted by Floquet-Bloch dressed states, that make solid HHG in the XUV more efficient by at least one order of magnitude. Emission intensity scalings that follow perturbative optical wave mixing, combined with the angular separation of the emitted frequencies, make our approach a decisive step for all-solid coherent XUV sources and for studying light-engineered materials.

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