Xu Yanping, Zhang Liang, Gao Song, Lu Ping, Mihailov Stephen, Bao Xiaoyi
Opt Lett. 2017 Apr 1;42(7):1353-1356. doi: 10.1364/OL.42.001353.
A novel highly sensitive ultrasound sensor based on a random fiber laser is proposed and demonstrated for the first time, to the best of our knowledge. The random fiber laser is constructed with the erbium-doped fiber gain. A fiber random grating provides random-distributed feedback for the random laser and acts as an ultrasound sensing head. The random laser can operate in a single-mode lasing scenario, which offers linear and pure temporal responses to the broadband ultrasonic acoustic emission from 20 kHz to 0.8 MHz. The multiple-interfering reflection spectrum of the random grating provides a large number of steep peak areas over a broad spectral range, which significantly enhances the sensitivity of the random laser sensor and makes it an ideal sensor in harsh environments with large temperature or strain variations. The proposed laser sensor offers signal-to-noise ratio improvement up to 20 dB and higher sensitivity compared with conventional piezoelectric acoustic sensors.
据我们所知,首次提出并展示了一种基于随机光纤激光器的新型高灵敏度超声传感器。随机光纤激光器由掺铒光纤增益构成。光纤随机光栅为随机激光器提供随机分布的反馈,并充当超声传感头。该随机激光器可在单模激光模式下工作,对20kHz至0.8MHz的宽带超声声发射提供线性且纯净的时间响应。随机光栅的多重干涉反射光谱在宽光谱范围内提供大量陡峭峰值区域,显著提高了随机激光传感器的灵敏度,使其成为在温度或应变变化较大的恶劣环境中的理想传感器。与传统压电声学传感器相比,所提出的激光传感器的信噪比提高了20dB,且灵敏度更高。