通过对阿秒条纹测量结果进行分析校准实现绝对延迟校准

G. Inzani, N. Di Palo, G. L. Dolso, M. Nisoli, M. Lucchini
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引用次数: 0

摘要

泵浦脉冲和探针脉冲的精确时间特性对于正确解释任何泵浦-探针实验至关重要。对于阿秒光谱学来说尤其如此,因为脉冲太短,无法用电子设备直接测量。然而,在测量光波形与相关光诱导物理现象之间的绝对时序时,这种表征并不适用。在这里,我们引入了一种名为 rACE(重构分析啁啾评估)的新方法,它可以同时检索泵浦脉冲和探针脉冲,同时在重构时间轴和实验延迟之间建立直接关系。这一特性对于提取绝对时间延迟尤其重要,而这一领域在阿秒光谱学中正在不断发展。在这项工作中,我们用模拟数据集证明了 rACE 的鲁棒性,这些数据集涉及脉冲啁啾、独特的目标属性和非隔离阿秒脉冲的影响,这些通常对标准方法构成挑战。对于本文报告的所有情况,rACE 都能实现精确的绝对延迟校准,精度优于原子时间单位。它在阿秒实验测量中的成功应用使其成为获得亚周期绝对时间分辨率的基本工具,从而能够对光波驱动的超快现象进行新的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Absolute delay calibration by analytical fitting of attosecond streaking measurements
An accurate temporal characterization of both pump and probe pulses is essential for the correct interpretation of any pump-probe experiment. This is particularly true for attosecond spectroscopy, where the pulses are too short to be directly measured with electronic devices. However, when measuring the absolute timing between a light waveform and the related photoinduced physical phenomenon, such characterization does not suffice. Here, we introduce a new method called rACE (refined Analytical Chirp Evaluation), which retrieves both pump and probe pulses while establishing a direct relation between the reconstructed time axis and the experimental delay. This feature is particularly relevant for the extraction of absolute time delays, a growing field in attosecond spectroscopy. In this work, we prove the robustness of rACE with simulated datasets involving the effect of pulse chirp, distinctive target attributes, and non-isolated attosecond pulses, which normally constitute challenging situations for standard methods. For all the cases reported here, rACE achieves a precise absolute delay calibration with an accuracy better than the atomic unit of time. Its successful application to attosecond experimental measurements makes it a fundamental tool for attaining sub-cycle absolute temporal resolution, enabling new investigations of lightwave-driven ultrafast phenomena.
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