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Ultrafast imaging to measure instantaneous intensity distributions of femtosecond optical pulses propagating in a medium

机译:超快成像可测量在介质中传播的飞秒光脉冲的瞬时强度分布

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摘要

We present an imaging technique to visualize instantaneous intensity distributions of propagating femtosecond optical pulses by making use of the optical Kerr effect (OKE), which is called femtosecond time-resolved optical polarigraphy (FTOP). By modifying the apparatus from that previously reported, we have succeeded in taking instantaneous profiles of femtosecond optical pulses under loosely focused propagation with a satisfactorily large dynamic range, even in a single-shot observation. In particular, we show pulse propagation behaviours in 2, 3 and 4 atm nitrogen gas when pulses with a 5.0 mm diameter are focused by an f=350 mm lens. FTOP images reveal the dependence of the propagation behaviour on the gas pressure. They also show alterations in the distribution widths and the pulse energy as the pulse progresses, which is considered to result from nonlinear interactions. Shot-to-shot fluctuations of pulse propagations are directly observed from the FTOP images taken under the same experimental parameters. We also discuss the possibility of applying the OKE echo to at-a-stretch measurements at several temporal points.
机译:我们提出一种成像技术,通过利用光学克尔效应(OKE)(称为飞秒时间分辨光学极谱法(FTOP))来可视化传播的飞秒光脉冲的瞬时强度分布。通过从先前报道的设备中修改设备,我们已经成功地获得了飞秒光脉冲的瞬时轮廓,即使在单次观测中,其在具有足够大的动态范围的松散聚焦传播下也是如此。特别地,当f = 350 mm透镜聚焦直径为5.0 mm的脉冲时,我们显示了在2、3和4 atm氮气中的脉冲传播行为。 FTOP图像揭示了传播行为对气压的依赖性。它们还显示出随着脉冲的进行,分布宽度和脉冲能量的变化,这被认为是由非线性相互作用引起的。从相同实验参数下拍摄的FTOP图像可直接观察到脉冲传播的逐次波动。我们还将讨论在几个时间点将OKE回波应用于拉伸测量的可能性。

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