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首页> 外文期刊>Applied optics >Ultrafast time-gated ballistic-photon imaging and shadowgraphy in optically dense rocket sprays
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Ultrafast time-gated ballistic-photon imaging and shadowgraphy in optically dense rocket sprays

机译:光学密集火箭喷雾中的超快时间门控弹道光子成像和阴影成像

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摘要

Time-gated ballistic-photon imaging is a form of shadowgraphy in which an ultrashort, optical-Kerreffect (order 2 ps) time gate is used to enhance the relative intensity of ballistic versus multiply scattered photons. In the current work, this technique is adapted for what is believed to be the first time for use in the moderately dense environment (optical density approx 1.5 to 2) of a high-speed 5 to 15 mm diameter rocket spray to improve image contrast and observe liquid-breakup phenomena. Unlike coherence gating, which is another form of ballistic imaging, the time-gating approach allows sufficient signal levels from ballistic and near-ballistic photons to enable time-resolved single-shot imaging. Direct comparisons with non-time-gated shadowgraphy indicate that the two techniques are sensitive to different features of the flowfield, with regions composed of a dense field of droplets being highly attenuated in conventional shadowgrams but appearing transparent to ballistic photons. This enables significant image contrast enhancement (approx6.6:1) of liquid-core structures and facilitates improved understanding of the primary and secondary breakup processes in sprays of moderate optical density.
机译:时间选通的弹道光子成像是一种阴影摄影形式,其中使用超短光学Kerreffect(2 ps量级)时间门来增强弹道与倍增散射光子的相对强度。在当前工作中,此技术适用于首次被认为是首次在直径5至15毫米的高速火箭喷雾的中等密度环境(光密度约为1.5至2)中使用,以改善图像对比度和观察液体破裂现象。与相干门控(它是弹道成像的另一种形式)不同,时间门控方法允许来自弹道和近弹道光子的足够信号电平,以实现时间分辨的单次成像。与非时间选通的阴影摄影法的直接比较表明,这两种技术对流场的不同特征敏感,由液滴的密集场组成的区域在常规阴影图中被高度衰减,但对弹道光子透明。这可以显着提高液芯结构的图像对比度(约6.6:1),并有助于更好地理解中等光密度喷雾中的一次和二次破裂过程。

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