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High-Sensitivity Gas Pressure Fabry–Perot Fiber Probe With Micro-Channel Based on Vernier Effect

机译:基于游标效应的微通道高灵敏度气压法布里-珀罗光纤探头

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摘要

In this paper, we propose and demonstrate a gas pressure fiber probe with high sensitivity magnified by Vernier effect. The probe is composed of two cascaded Fabry-Perot interferometers based on a SMF-SOHST-OFC structure (SMF: single-mode fiber; SOHST: side-opened hollow silica tube; OFC: optical fiber column). The high-frequency CO2 laser drilling method for hollow silica tube can effectively maintain the transient balance of the air pressure inside and outside the cavity without destroying the reflective ends of the optical fibers. Experimental results show that the prepared fiber probe with the SOHST length of 375.2 mu m and column length of 247.3 mu m has high gas pressure sensitivity of 80.3 pm/kPa by demodulating Vernier envelope, and it has relatively low temperature cross-sensitivity of -133 kPa/degrees C. This sensor is highly sensitive and of compact size, which not only can be applied in gas pressure sensing but also has the potential for application in microfluidic detection.
机译:在本文中,我们提出并演示了一种通过韦尼尔效应放大的具有高灵敏度的气压光纤探头。该探头由两个基于SMF-SOHST-OFC结构的级联Fabry-Perot干涉仪组成(SMF:单模光纤; SOHST:侧面开口的空心石英管; OFC:光纤柱)。中空石英管的高频CO2激光钻孔方法可以有效地保持腔体内外气压的瞬时平衡,而不会破坏光纤的反射端。实验结果表明,所制得的光纤探针的SOHST长度为375.2μm,柱长为247.3μm,通过对Vernier包络线进行解调,具有较高的气压灵敏度80.3 pm / kPa,相对较低的温度交叉灵敏度-133 kPa /度C。该传感器高度灵敏且尺寸紧凑,不仅可以应用于气压传感,而且还具有应用于微流体检测的潜力。

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