Cui M, Zeitouny M G, Bhattacharya N, van den Berg S A, Urbach H P
Department of Applied Sciences, Technical University Delft, Delft, The Netherlands.
Opt Express. 2011 Mar 28;19(7):6549-62. doi: 10.1364/OE.19.006549.
We experimentally demonstrate long distance measurements with a femtosecond frequency comb laser using dispersive interferometry. The distance is derived from the unwrapped spectral phase of the dispersed interferometer output and the repetition frequency of the laser. For an interferometer length of 50 m this approach has been compared to an independent phase counting laser interferometer. The obtained mutual agreement is better than 1.5 μm (3×10(-8)), with a statistical averaging of less than 200 nm. Our experiments demonstrate that dispersive interferometry with a frequency comb laser is a powerful method for accurate and non-incremental measurement of long distances.
我们通过色散干涉测量法,用飞秒频率梳激光器进行了长距离测量的实验演示。距离由色散干涉仪输出的展开光谱相位和激光器的重复频率得出。对于50米的干涉仪长度,该方法已与独立的相位计数激光干涉仪进行了比较。得到的相互一致性优于1.5微米(3×10^(-8)),统计平均值小于200纳米。我们的实验表明,使用频率梳激光器的色散干涉测量法是一种用于精确和非增量式长距离测量的强大方法。