论文标题
单扫描,双功能干涉仪,用于几个周期脉冲的快速时空表征
Single-scan, dual-functional interferometer for fast spatiotemporal characterization of few-cycle pulses
论文作者
论文摘要
高强度,超短脉冲的时空信息的准确和快速表征对于强场激光科学技术领域至关重要。尽管常规的自我引用的干涉仪被广泛用于检索脉冲相对光谱相的空间谱,但在激光束的特定位置的时间和光谱信息的其他测量对于去除不确定性是必不可少的,从而增加了系统的复杂性。在这里,我们报告了一个高级,双功能干涉仪,能够通过单扫描干涉仪臂的单个扫描来重建超短脉冲的完整时空信息。该设置将干涉频率分辨的光门控(Frog)与径向剪切米歇尔森干涉仪相结合。扫描干涉仪的一个臂,同时获得了激光束中央部分的交叉相关青蛙迹线,以及整个激光谱的延迟依赖性干扰图,同时获得,从而可以对少数循环激光脉冲的快速3维重建。
Accurate and fast characterization of spatiotemporal information of high-intensity, ultrashort pulses is crucial in the field of strong-field laser science and technology. While conventional self-referenced interferometers were widely used to retrieve the spatial profile of the relative spectral phase of pulses, additional measurements of temporal and spectral information at a particular position of the laser beam were, however, necessary to remove the indeterminacy, which increases the system complexity. Here we report an advanced, dual-functional interferometer that is able to reconstruct the complete spatiotemporal information of ultrashort pulses with a single scan of the interferometer arm. The set-up integrates an interferometric frequency-resolved optical gating (FROG) with a radial shearing Michelson interferometer. Trough scanning one arm of the interferometer, both cross-correlated FROG trace at the central part of the laser beam and delay-dependent interferograms of the entire laser profile are simultaneously obtained, allowing a fast 3-dimensional reconstruction of few-cycle laser pulses.