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Spatio-temporal coherence mapping of few-cycle vortex pulses

机译:少周期涡旋脉冲的时空相干映射

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摘要

Light carrying an orbital angular momentum (OAM) displays an optical phase front rotating in space and time and a vanishing intensity, a so-called vortex, in the center. Beyond continuous-wave vortex beams, optical pulses with a finite OAM are important for many areas of science and technology, ranging from the selective manipulation and excitation of matter to telecommunications. Generation of vortex pulses with a duration of few optical cycles requires new methods for characterising their coherence properties in space and time. Here we report a novel approach for flexibly shaping and characterising few-cycle vortex pulses of tunable topological charge with two sequentially arranged spatial light modulators. The reconfigurable optical arrangement combines interferometry, wavefront sensing, time-of-flight and nonlinear correlation techniques in a very compact setup, providing complete spatio-temporal coherence maps at minimum pulse distortions. Sub-7 fs pulses carrying different optical angular momenta are generated in single and multichannel geometries and characterised in comparison to zero-order Laguerre-Gaussian beams. To the best of our knowledge, this represents the shortest pulse durations reported for direct vortex shaping and detection with spatial light modulators. This access to space-time coupling effects with sub-femtosecond time resolution opens new prospects for tailored twisted light transients of extremely short duration.
机译:携带轨道角动量(OAM)的光在空间和时间中显示出旋转的光学相位,而在中心则显示出消失的强度,即所谓的涡旋。除连续波涡旋光束外,具有有限OAM的光脉冲对于许多科学技术领域也很重要,从物质的选择性操纵和激发到电信。持续几个光学周期的涡旋脉冲的产生需要新的方法来表征其空间和时间的相干特性。在这里,我们报告了一种新颖的方法,该方法可以灵活地塑造和表征具有两个顺序排列的空间光调制器的可调拓扑电荷的几个周期的涡旋脉冲。可重新配置的光学装置在非常紧凑的设置中结合了干涉测量法,波前感测,飞行时间和非线性相关技术,从而以最小的脉冲失真提供了完整的时空相干图。带有不同光学角动量的Sub-7 fs脉冲在单通道和多通道几何结构中生成,并与零级Laguerre-Gaussian光束进行比较。据我们所知,这代表了直接涡旋成形和空间光调制器检测所报告的最短脉冲持续时间。这种具有亚飞秒时间分辨率的时空耦合效应的获得,为持续时间极短的量身定制的扭曲光瞬变开辟了新的前景。

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