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Photonic Crystal Fiber Heat Sensors

机译:光子晶体光纤热传感器

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A sensing configuration based on commercially available triple-core photonic crystal fiber (PCF) for the image-based collection of thermal information is presented. Detection of thermal phenomena on the micro and nano scale is important for monitoring thermodynamic processes including cooling mechanisms for industry and basic research in both civil and mechanical systems. The thermal characteristics of the PCF combined with coupled-mode theory principles are used to construct a three core PCF with a 1-D core arrangement to simultaneously measure heat flux and temperature. The PCF sensor demonstrated high detection sensitivity (<1°C) and fast response times (<30μs), which is a significant improvement to current commercial standards. PCFs are specialty optical fibers that contain carefully spaced micron-sized cavities that provide extraordinary waveguide characteristics not demonstrated by standard optical fiber. The three core PCF has a core diameter of 3.9μm, outer diameter of 132.5μm and varied inter core spacing. A single mode fiber is fusion spliced with the multi-core PCF such that the optical field is confined and launched into the PCF core. The output end of the fiber is inspected and imaged with a CCD camera. A 25mm section of the PCF is surrounded by a guarded hotplate configuration to control the thermal conditions for sensor characterization. Evanescent wave coupling occurs whereby power is transferred from the central core to a neighboring core. Minimum detection sensitivities of 0.2 °C were recorded. Theoretical sensitivities on the order of 10~(-2) °C are possible. Experimental results were in agreement with coupled-mode theoretical results.
机译:提出了一种基于商用三芯光子晶体光纤(PCF)的传感配置,用于基于图像的热信息收集。在微米和纳米尺度上检测热现象对于监测热力学过程非常重要,包括用于工业的冷却机理以及民用和机械系统的基础研究。 PCF的热特性与耦合模式理论原理相结合,用于构建具有一维磁芯布置的三芯PCF,以同时测量热通量和温度。 PCF传感器显示出高检测灵敏度(<1°C)和快速响应时间(<30μs),这是对当前商业标准的重大改进。 PCF是特种光纤,其中包含精心布置的微米级腔体,这些腔体提供了标准光纤无法证明的非凡的波导特性。三芯PCF的芯直径为3.9μm,外径为132.5μm,芯间间距各不相同。单模光纤与多芯PCF熔接在一起,从而将光场限制并发射到PCF芯中。光纤的输出端通过CCD摄像机进行检查并成像。 PCF的25mm截面被保护的热板配置围绕,以控制用于传感器表征的热条件。发生van逝波耦合,从而将功率从中央磁芯传输到相邻磁芯。记录的最低检测灵敏度为0.2°C。理论灵敏度约为10〜(-2)°C。实验结果与耦合模式理论结果一致。

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