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首页> 外文期刊>Applied optics >Side-hole two-core microstructured optical fiber for hydrostatic pressure sensing
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Side-hole two-core microstructured optical fiber for hydrostatic pressure sensing

机译:用于静水压力传感的侧孔两芯微结构光纤

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摘要

A novel side-hole two-core microstructured optical fiber (STMOF) is proposed for hydrostatic pressure sensing. The two solid fiber cores are surrounded by a few small air holes and two large air holes, and are separated by one small air hole in the center of the cross section of the STMOF. The two large air holes that we called side holes essentially provide a built-in transducing mechanism to enhance the pressure-induced index change, which ensures the high sensitivity of the hydrostatic pressure sensor based on the STMOF. Mode coupling between the two fiber cores of the STMOF has been investigated, which provides a pressure-dependent transmission spectrum by injecting a broadband light into one fiber core of the STMOF on one side and detecting output spectrum on another fiber core on the other side. Our simulations show that there is a one-to-one correspondence between the hydrostatic pressure applied on the STMOF and the peak wavelength shift of the transmission spectrum. A hydrostatic pressure sensor based on an 8 cm STMOF has a sensitivity of 0.111 nm/Mpa for the measurement range from 0 Mpa to 200 Mpa. The performances of hydrostatic pressure sensors based on STMOFs with different structure parameters are presented.
机译:提出了一种新型的侧孔两芯微结构光纤(STMOF),用于静水压力传感。两个实心纤维芯被几个小气孔和两个大气孔围绕,并在STMOF横截面的中心被一个小气孔隔开。我们称为侧孔的两个大气孔实质上提供了一种内置的换能机制,以增强压力引起的指数变化,从而确保了基于STMOF的静液压传感器的高灵敏度。已经研究了STMOF的两个光纤芯之间的模式耦合,该模式耦合通过将宽带光的一侧注入STMOF的一个光纤芯并在另一侧检测另一光纤芯的输出光谱来提供与压力相关的传输光谱。我们的仿真表明,施加在STMOF上的静水压力与透射光谱的峰值波长偏移之间存在一一对应的关系。基于8 cm STMOF的静水压力传感器在0 Mpa至200 Mpa的测量范围内的灵敏度为0.111 nm / Mpa。给出了具有不同结构参数的基于STMOF的静水压力传感器的性能。

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