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Modal Interferometric Sensor Based in a Birefringent Boron-doped Microstructured Fiber

机译:基于双折射掺硼微结构纤维的模态干涉传感器

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Microstructured optical fibers (MOFs) have been widely studied owing to their potential for obtaining novel transmission, nonlinear and sensing characteristics. Sensing applications of MOFs cover various types of devices for measurements of different physical and specific chemical compounds in gases and liquids employing evanescent field techniques. Such fibers can also be used as active and passive elements in fiber-optic polarimetric and interferometric sensors. We present an in-line fiber modal interferometer fabricated in boron-doped highly birefringent microstructured fiber. The boron-doped region located in the middle of the core decreases the effective index of the fundamental mode and facilitates coupling between the fundamental and the first order mode. The coupling regions have the form of fiber narrowings fabricated using CO_2 laser and are distant by a few millimeters. The spectral intensity at the sensor output is modulated only by intermodal interference produced by a short piece of fiber between the two coupling points. Moreover, as the fiber is highly birefringence, each pair of polarization modes produces its own intermodal fringes, which results in the contrast modulation of the overall interference signal observed at the fiber output, and provides an additional degree of freedom to measure simultaneously a pair of measurands.
机译:由于微结构光纤(MOF)具有获得新颖的传输,非线性和传感特性的潜力,因此已被广泛研究。 MOF的传感应用涵盖使用消逝场技术测量气体和液体中不同物理和特定化学化合物的各种类型的设备。这种光纤还可以用作光纤偏振和干涉传感器中的有源和无源元件。我们提出了一种在掺硼高双折射微结构光纤中制造的同轴光纤模态干涉仪。位于纤芯中间的硼掺杂区域降低了基模的有效折射率,并促进了基模和一阶模之间的耦合。耦合区域具有使用CO_2激光制造的纤维变窄的形式,并且相距几毫米。传感器输出处的光谱强度仅由两个耦合点之间的一小段光纤所产生的联运干扰来调制。此外,由于光纤是高度双折射的,所以每对偏振模都会产生自己的模态条纹,从而导致在光纤输出端观察到的总干涉信号的对比度调制,并提供了同时测量一对光纤的额外自由度。被测者。

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