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Observation of laser pulse propagation in optical fibers with a SPAD camera

机译:用SPAD相机观察光纤中的激光脉冲传播

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摘要

Recording processes and events that occur on sub-nanosecond timescales poses a difficult challenge. Conventional ultrafast imaging techniques often rely on long data collection times, which can be due to limited device sensitivity and/or the requirement of scanning the detection system to form an image. In this work, we use a single-photon avalanche detector array camera with pico-second timing accuracy to detect photons scattered by the cladding in optical fibers. We use this method to film supercontinuum generation and track a GHz pulse train in optical fibers. We also show how the limited spatial resolution of the array can be improved with computational imaging. The single-photon sensitivity of the camera and the absence of scanning the detection system results in short total acquisition times, as low as a few seconds depending on light levels. Our results allow us to calculate the group index of different wavelength bands within the supercontinuum generation process. This technology can be applied to a range of applications, e.g., the characterization of ultrafast processes, time-resolved fluorescence imaging, three-dimensional depth imaging, and tracking hidden objects around a corner.
机译:在亚纳秒时间尺度上发生的记录过程和事件造成困难的挑战。传统的超快成像技术通常依赖于长数据收集时间,这可能是由于设备灵敏度有限和/或扫描检测系统以形成图像的要求。在这项工作中,我们使用单光子雪崩检测器阵列相机,具有微微第二定时精度,以检测由光纤中的包层散射的光子。我们使用这种方法来拍摄超分支机构,并跟踪光纤中的GHz脉冲列车。我们还展示了计算成像可以提高阵列的有限空间分辨率。相机的单光子敏感性和扫描检测系统的缺失会使总获取时间短,这取决于光线水平的几秒钟。我们的结果允许我们计算超连续生成过程中不同波长带的组索引。该技术可以应用于一系列应用,例如超快过程的表征,时间分辨荧光成像,三维深度成像,以及跟踪角落周围的隐藏物体。

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