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Polarization-Maintaining Photonic Crystal Fiber Vibration Sensor Based on Polarization-Diversified Loop Structure with Improved Frequency Response

机译:基于偏振多样化环结构的偏振 - 保持光子晶体纤维振动传感器,其改进频率响应

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We investigated the frequency response of a polarimetric fiber vibration sensor based on a polarization diversified loop structure according to the length of polarization-maintaining photonic crystal fiber (PM-PCF) used as a sensor head. The fiber vibration sensor was fabricated using a polarization beam splitter, PM-PCF, and two waveplates, that is, a quarter-wave plate and a half-wave plate. For intensity-based vibration measurement, a laser diode and a photodetector were utilized for the realization of the sensor system. The single-frequency vibration was applied to the sensor head by using a piezoelectric transducer. Over a frequency range of 1-3000 Hz, the frequency response of the fabricated sensor was observed for three kinds of sensor head lengths of 6.2, 8.4, and 12.2 cm. In measured frequency responses, a resonance peak appeared at 140 Hz irrespective of the PM-PCF length, but cut-off frequencies were measured as ~538, ~386, and ~228 Hz for PM-PCF lengths of 6.2, 8.4, and 12.2 cm, respectively. The phase shift per unit strain and the minimum detectable strain perturbation were measured as ~0.291 mrad/με and ~0.392 nε/Hz~(1/2) at 2000 Hz for 6.2-cm-long PM-PCF, respectively.
机译:我们根据用作传感器头部的偏振保持光子晶体纤维(PM-PCF)的长度,研究了基于极化多样化环结构的极化纤维振动传感器的频率响应。使用偏振分束器,PM-PCF和两波形,即四分之一波片和半波片制造纤维振动传感器。对于基于强度的振动测量,利用激光二极管和光电探测器来实现传感器系统。通过使用压电换能器将单频振动施加到传感器头部。在1-3000Hz的频率范围内,观察到制造传感器的频率响应,为6.2,8.4和12.2厘米的三种传感器头长。在测量的频率响应中,不管PM-PCF长度如何,谐振峰值出现在140Hz时,但为PM-PCF长度为6.2,8.4和12.2的PM-PCF长度测量截止频率为〜538,〜386,〜228Hz CM分别。每单位菌株的相移和最小可检测应变扰动分别以2000Hz为6.2-cm-LOM-PCF的〜0.291mRad /με和〜0.392nε/ hz〜(1/2)。

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