Dändliker R, Thalmann R, Prongué D
Opt Lett. 1988 May 1;13(5):339-41. doi: 10.1364/ol.13.000339.
In two-wavelength interferometry, synthetic wavelengths are generated in order to reduce the sensitivity or to extend the range of unambiguity for interferometric measurements. Here a novel optoelectronic technique, called superheterodyne detection, is presented, which permits measurement of the phase difference of two optical frequencies that cannot be resolved by direct optoelectronic heterodyne detection. This technique offers the possibility for operation of two-wavelength interferometry in real time with arbitrary synthetic wavelengths from micrometers to meters in length. Preliminary experimental results are reported. An optical arrangement for absolute range-finding applications using tunable-laser sources (e.g., semiconductor lasers) is proposed.
在双波长干涉测量法中,生成合成波长是为了降低干涉测量的灵敏度或扩展其无模糊度范围。本文提出了一种名为超外差检测的新型光电技术,它能够测量直接光电外差检测无法分辨的两个光频的相位差。该技术为双波长干涉测量法实时使用从微米到米的任意合成波长进行操作提供了可能性。报告了初步实验结果。还提出了一种使用可调谐激光源(如半导体激光器)进行绝对测距应用的光学装置。