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Absolute distance measurement system using a femtosecond laser as a modulator

机译:使用飞秒激光作为调制器的绝对距离测量系统

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摘要

The generation of broadband microwave frequency comb from a femtosecond pulse train by direct photodetection opens the possibility for high-accuracy length measurements of long distances. We demonstrate a relatively simple realization of this measurement principle: an electronic distance measurement system based on a time-of-flight approach, driven by a femtosecond fibre laser source as a modulator. By the evaluation of the phase shifts of two distinct comb frequencies, a coarse and a fine measurement of the absolute distance can be performed. The range of the measurement system is demonstrated up to a length of 100 m. The experimental comparison of the femtosecond laser system with a conventional reference counting interferometer shows a precision better than +-10 (mu)m at 100 m, corresponding to a relative measurement uncertainty of 1 X 10~(-7) L. The limiting factors for the measurement uncertainty of the system are theoretically investigated and shown to be of the same order of magnitude.
机译:通过直接光电检测从飞秒脉冲序列生成宽带微波频率梳,开辟了进行长距离高精度长度测量的可能性。我们演示了这种测量原理的相对简单的实现:一种基于飞行时间方法的电子测距系统,由飞秒光纤激光源作为调制器来驱动。通过评估两个不同梳齿频率的相移,可以对绝对距离进行粗略和精细的测量。演示了测量系统的范围,最长可达100 m。飞秒激光系统与常规参考计数干涉仪的实验比较表明,在100 m处的精度优于+ -10μm,对应的相对测量不确定度为1 X 10〜(-7)L。限制因素理论上对系统测量不确定度进行了研究,并显示出其具有相同的数量级。

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