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Underwater low acoustic frequency detection based on in-line Mach Zehnder interferometer

机译:基于在线马赫Zehnder干涉仪的水下低声频率检测

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We propose and demonstrate an in-line Mach-Zehnder interferometer (IMZI) as an optical hydrophone. The IMZI is fabricated by creating two tapers in the single-mode fiber (SMF), and the two tapered sections are separated by a small section of untapered SMF. To achieve higher sensitivity, this IMZI is attached to a circular natural rubber (NR) diaphragm. The sensing mechanism is based on the acoustic pressure-induced wavelength shift of the IMZI transmission spectrum. The proposed hydrophone is tested underwater with acoustic signals of different frequencies in the range of 15-250 Hz. For a specific IMZI structure, the hydrophone shows a sensitivity of 27.93 nm/Pa and a noise-limited minimum detectable pressure of 5.53 mPa/root Hz. One can tailor the acoustic sensitivity of the proposed hydrophone by changing different parameters of diaphragm and IMZI. The excellent underwater performance of the NR diaphragm makes the proposed hydrophone an efficient and economical system for underwater low-frequency acoustic signal detection. (C) 2021 Optical Society of America
机译:我们提出并演示了一种在线马赫-曾德尔干涉仪(IMZI)作为光学水听器。IMZI是通过在单模光纤(SMF)中创建两个锥形部分来制造的,两个锥形部分由一小段未穿过的SMF隔开。为了获得更高的灵敏度,该IMZI连接到圆形天然橡胶(NR)膜片上。传感机制基于声压引起的IMZI透射光谱波长偏移。该水听器在15-250 Hz范围内使用不同频率的声信号进行水下测试。对于特定的IMZI结构,水听器的灵敏度为27.93 nm/Pa,噪声限制最小可检测压力为5.53 mPa/Hz。可以通过改变振膜和IMZI的不同参数来调整所提出水听器的声学灵敏度。NR振膜优异的水下性能使该水听器成为一种高效、经济的水下低频声信号检测系统。(2021)美国光学学会

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