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Measurement of Curvature and Temperature using Multimode Interference Devices

机译:使用多模干涉仪测量曲率和温度

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In this paper we propose the fabrication, implementation, and testing of a novel fiber optic sensor based on Multimode Interference (MMI) effects for independent measurement of curvature and temperature. The development of fiber based MMI devices is relatively new and since they exhibit a band-pass filter response they can be used in different applications. The operating mechanism of our sensor is based on the self-imaging phenomena that occur in multimode fibers (MMF), which is related to the interference of the propagating modes and their accumulated phase. We demonstrate that the peak wavelength shifts with temperature variations as a result of changes in the accumulated phase through thermo-optics effects, while the intensity of the peak wavelength is reduced as the curvature increases since we start to loss higher order modes. In this way both measurements are obtained independently with a single fiber device. Compared to other fiber-optic sensors, our sensor features an extremely simple structure and fabrication process, and hence cost effectiveness.
机译:在本文中,我们提出了一种基于多模干涉(MMI)效应的新型光纤传感器的制造,实现和测试,该传感器可独立测量曲率和温度。基于光纤的MMI设备的开发相对较新,并且由于它们具有带通滤波器响应,因此可以在不同的应用中使用。我们传感器的操作机制基于多模光纤(MMF)中发生的自成像现象,该现象与传播模式及其累积相位的干扰有关。我们证明,由于通过热光效应累积相的变化,峰值波长会随温度变化而移动,而随着我们开始失去高阶模态,峰值波长的强度会随着曲率的增加而减小。这样,两个测量都可以通过单个光纤设备独立获得。与其他光纤传感器相比,我们的传感器具有极其简单的结构和制造过程,因此具有成本效益。

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