Towards the complete phase profiling of attosecond wave packets

J. Fuchs, N. Douguet, S. Donsa, F. Martín, J. Burgdörfer, L. Argenti, L. Cattaneo, U. Keller
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引用次数: 3

Abstract

Realistic attosecond wave packets have complex profiles that, in dispersive conditions, rapidly broaden or split into multiple components. Such behaviors are encoded in sharp features of the wave packet spectral phase. Here, we exploit the quantum beating between one- and two-photon transitions in an attosecond photoionization experiment to measure the photoelectron spectral phase continuously across a broad energy range. Supported by numerical simulations, we demonstrate that this experimental technique is able to reconstruct sharp fine-scale features of the spectral phase, continuously as a function of energy and across the full spectral range of the pulse train, thus beyond the capabilities of existing attosecond spectroscopies. In a proof-of-principle experiment, we retrieve the periodic modulations of the spectral phase of an attosecond pulse train due to the individual chirp of each harmonic.
迈向阿秒波包的完整相位分析
现实的阿秒波包具有复杂的剖面,在色散条件下,会迅速变宽或分裂成多个分量。这些行为被编码在波包谱相位的清晰特征中。在这里,我们利用阿秒光电离实验中单光子和双光子跃迁之间的量子跳动,在宽能量范围内连续测量光电子能谱相位。在数值模拟的支持下,我们证明了这种实验技术能够在脉冲序列的整个光谱范围内,连续地重建光谱相位的清晰的精细尺度特征,从而超越了现有阿秒光谱的能力。在一个原理验证实验中,我们检索了由于每个谐波的单个啁啾而导致的阿秒脉冲序列的频谱相位的周期性调制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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