Murphy K A, Miller Iii W V, Tran T A, Vengsarkar A M, Claus R O
Appl Opt. 1991 Dec 1;30(34):5063-7. doi: 10.1364/AO.30.005063.
We present a novel, miniaturized Michelson-type fiber-optic interferometric sensor that is relatively insensitive to temperature drifts. A fused-biconical tapered coupler is cleaved immediately after the coupled length and polished down to the region of the fused cladding, but short of the interaction region. The end of one core is selectively coated with a reflective surface and is used as the reference arm; the other core serves as the sensing arm. We report the detection of surface acoustic waves, microdisplacements, and magnetic fields. The sensor is shown to be highly stable in comparison to a classic homodyne, uncompensated Michelson interferometer, and signal-to-noise ratios of 65 dB have been obtained.
我们展示了一种新型的小型化迈克尔逊型光纤干涉传感器,它对温度漂移相对不敏感。在耦合长度之后立即切割一个熔锥型耦合器,并将其抛光至熔接包层区域,但不包括相互作用区域。一个纤芯的末端选择性地涂覆有反射表面,并用作参考臂;另一个纤芯用作传感臂。我们报告了对表面声波、微位移和磁场的检测。与传统的零差、未补偿迈克尔逊干涉仪相比,该传感器显示出高度的稳定性,并且获得了65 dB的信噪比。