Jacquin Olivier, Lacot Eric, Glastre Wilfried, Hugon Olivier, Guillet de Chatellus Hugues
Centre National de la Recherche Scientifique/Université de Grenoble 1, Laboratoire Interdisciplinaire de Physique, UMR 5588, Grenoble F-38041, France.
J Opt Soc Am A Opt Image Sci Vis. 2011 Aug 1;28(8):1741-6. doi: 10.1364/JOSAA.28.001741.
Using an Nd:YVO₄ microchip laser with a relaxation frequency in the megahertz range, we have experimentally compared a heterodyne interferometer based on a Michelson configuration with an autodyne interferometer based on the laser optical feedback imaging (LOFI) method regarding their signal-to-noise ratios. In the heterodyne configuration, the beating between the reference beam and the signal beam is realized outside the laser cavity, while in the autodyne configuration, the wave beating takes place inside the laser cavity, and the relaxation oscillations of the laser intensity then play an important part. For a given laser output power, object under investigation, and detection noise level, we have determined the amplification gain of the LOFI interferometer compared to the heterodyne interferometer. LOFI interferometry is demonstrated to show higher performance than heterodyne interferometry for a wide range of laser powers and detection levels of noise. The experimental results are in good agreement with the theoretical predictions.
我们使用了一台弛豫频率在兆赫兹范围内的钕钇钒酸钇(Nd:YVO₄)微芯片激光器,通过实验比较了基于迈克尔逊配置的外差干涉仪和基于激光光学反馈成像(LOFI)方法的自差干涉仪的信噪比。在外差配置中,参考光束和信号光束之间的拍频在激光腔外实现,而在自差配置中,波的拍频在激光腔内发生,然后激光强度的弛豫振荡起到重要作用。对于给定的激光输出功率、被研究对象和检测噪声水平,我们确定了LOFI干涉仪相对于外差干涉仪的放大增益。结果表明,在广泛的激光功率和噪声检测水平范围内,LOFI干涉测量法比外差干涉测量法具有更高的性能。实验结果与理论预测吻合良好。