首页> 外文会议>Conference on commercial and biomedical applications of ultrafast lasers IX; 20090125-28; San Jose, CA(US) >Ultrafast Heterodyne Optical Sampling applied to Picosecond Ultrasonics and Nanoscale Heat Transfer
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Ultrafast Heterodyne Optical Sampling applied to Picosecond Ultrasonics and Nanoscale Heat Transfer

机译:超快速外差光学采样应用于皮秒超声和纳米级传热

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摘要

Pump-probe techniques are widely used to measure events on time scales much shorter than the resolution of electronic detectors, and are applied in such diverse fields as ultrafast spectroscopy, photo-acoustics, TeraHertz imaging, etc. In ultrafast photoacoustics measurements for instance, a pump beam launches in the sample acoustic waves, which are detected by a second, temporally shifted probe beam. Typical detection methods rely on very small changes in the reflection coefficient of the sample surface, requiring an averaging of the signal to improve the signal to noise ratio. Traditional pump-probe methods use a mechanical delay line to shift the two pulses in the time domain, where each measurement point corresponds to a single mechanical position of the delay line. Although very efficient for small measurement ranges, extending this method in the hundreds of picoseconds or nanosecond lead to a very long acquisition time, and unpractical length for the delay line.
机译:泵浦探测技术被广泛用于在比电子探测器的分辨率更短的时间尺度上测量事件,并且被应用于诸如超快光谱学,光声,太赫兹成像等各种领域。在超快光声测量中,例如泵浦声束在样本声波中发射,由第二个随时间变化的探测声束检测到。典型的检测方法依赖于样品表面反射系数的很小变化,需要对信号进行平均以提高信噪比。传统的泵探测方法使用机械延迟线在时域中移动两个脉冲,其中每个测量点对应于延迟线的单个机械位置。尽管对于较小的测量范围非常有效,但将这种方法扩展到数百皮秒或纳秒的范围会导致非常长的采集时间,并且会导致延迟线的实际长度不足。

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