论文标题
使用多循环激光 - 原子相互作用的微型joule水平相干级别的极端紫外线辐射
Generation of micro-Joule level coherent quasi-continuum extreme ultraviolet radiation using multi-cycle intense laser-atom interactions
论文作者
论文摘要
在目前的工作中,我们报告了最近在电子结构研究所和研究和技术基础的激光(即S.L-FO.R.T.H。)开发的最近构建的GW AttoSecond Extremustraviolet(XUV)源的当前进展。通过实施紧凑的偏振装置布置,通过实现多周期红外场与气相培养基的相互作用产生的宽带,连贯的XUV Quasi-Continuum。 XENON产生的XUV发射的光谱宽度在17-32 eV的范围内,并且可以在1μJ级别中支撑在0.4 fs到1.3 fs的持续时间范围内的孤立脉冲,并在1μJ级别中脉搏能量。理论计算,考虑到这项工作的实验条件,考虑到了这项工作的实验条件,也支持了iNSITS的互联网,并在时间范围内进行了启发。最后,通过研究氩原子的两Xuv-photon双电离过程,已经证实了产生的Xuv脉冲的高强度。所证明的结果在非线性XUV过程,AttoSend脉冲计量学和XUV泵浦XUV XUV探针实验的研究中开设了光束线产生强烈分离的Attosent脉冲的能力。
In the present work we report on the current progress of the recently constructed GW attosecond extreme ultraviolet (XUV) source developed at the Institute of Electronic Structure and Laser of the Foundation for Research and Technology-Hellas (I.E.S.L-FO.R.T.H.). By the implementation of a compact-collinear polarization gating arrangement, the generation of a broadband, coherent XUV quasi-continuum produced by the interaction of a many-cycle infrared field with a gas phase medium is achieved. The spectral width of the XUV emission generated in Xenon, is spanning in the range of 17-32 eV and can support isolated pulses of duration in the range from 0.4 fs to 1.3 fs and pulse energy in the 1 μJ level.Theoretical calculations, taking into account the experimental conditions of this work, are supporting the observations, offering also an insight regarding the temporal profile of the emitted radiation. Finally, the high intensity of the produced XUV pulses has been confirmed by investigating the two-XUV-photon double ionization process of Argon atoms. The demonstrated results inaugurate the capability of the beamline to produce intense isolated attosecond pulses towards their exploitation in studies of non-linear XUV processes, attosecond pulse metrology and XUV pump XUV probe experiments.