Guillemé Pierre, Lacot Eric, Jacquin Olivier, Glastre Wilfried, Hugon Olivier, Guillet de Chatellus Hugues
J Opt Soc Am A Opt Image Sci Vis. 2013 Nov 1;30(11):2205-15. doi: 10.1364/JOSAA.30.002205.
In autodyne interferometry, the beating between the reference beam and the signal beam takes place inside the laser cavity and therefore the laser fulfills simultaneously the roles of emitter and detector of photons. In these conditions, the laser relaxation oscillations play a leading role, both in the laser quantum noise, which determines the signal-to-noise ratio (SNR), and also in the laser dynamics, which determines the response time of the interferometer. In the present study, we have experimentally analyzed the SNR and the response time of a laser optical feedback imaging (LOFI) interferometer based on a Nd(3+) microchip laser, with a relaxation frequency in the megahertz range. More precisely, we have compared the image quality obtained when the laser dynamics is free and when it is controlled by a stabilizing electronic feedback loop using a differentiator. From this study, we can conclude that when the laser time response is shorter (i.e., the LOFI gain is lower), the image quality can be better (i.e., the LOFI SNR can be higher) and that the use of an adapted electronic feedback loop allows high-speed LOFI with a shot-noise limited sensitivity. Despite the critical stability of the electronic feedback loop, the obtained experimental results are in good agreement with the theoretical predictions.
在自差干涉测量中,参考光束与信号光束之间的拍频发生在激光腔内,因此激光同时充当光子的发射源和探测器。在这些条件下,激光弛豫振荡在决定信噪比(SNR)的激光量子噪声以及决定干涉仪响应时间的激光动力学中都起着主导作用。在本研究中,我们通过实验分析了基于Nd(3+)微芯片激光器的激光光学反馈成像(LOFI)干涉仪的信噪比和响应时间,其弛豫频率在兆赫兹范围内。更确切地说,我们比较了在激光动力学自由时和由使用微分器的稳定电子反馈回路控制时所获得的图像质量。从这项研究中,我们可以得出结论,当激光时间响应较短时(即LOFI增益较低),图像质量可以更好(即LOFI信噪比可以更高),并且使用合适的电子反馈回路可以实现具有散粒噪声限制灵敏度的高速LOFI。尽管电子反馈回路的稳定性至关重要,但所获得的实验结果与理论预测吻合良好。