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Temperature sensing setup based on an aluminum coated Mach-Zehnder Interferometer

机译:基于铝涂层马赫曾德尔干涉仪的温度传感装置

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In this paper a temperature sensing setup based on a Photonic Crystal Fiber (PCF) Mach-Zehnder Interferometer (MZI), coated with aluminum is proposed. Here, this interferometer is fabricated through the concatenation of two sections of Single Mode Fiber (SMF) with a segment of PCF between them. The SMF-PCF joint acts as beam splitter causing the excitement of PCF's, both cladding and fundamental core modes. In the PCF-SMF union, the cladding modes couple again to the core of the SMF, and interfere with the fundamental core mode, this interaction results in an interference pattern spectrum. Moreover, the MZI was coated with aluminum, using the evaporation technique. By adding a thin metal layer to the PCF section, the general thermal coefficient of the structure changes, enhancing the sensitivity of the device. Experimental results show that a visibility of 13 dBm can be obtained and a sensitivity of 250 pm/°C. Finally, the proposed structure is simple, cost effective and easy to fabricate.
机译:本文提出了一种基于光子晶体光纤(PCF)Mach-Zehnder干涉仪(MZI)并涂有铝的温度传感装置。在这里,该干涉仪是通过将单模光纤(SMF)的两个部分串联在一起,并在它们之间有一部分PCF制成的。 SMF-PCF接头充当分束器,引起PCF的兴奋,包括包层模和基本芯模。在PCF-SMF联合中,包层模式再次耦合到SMF的核心,并干扰基本的核心模式,这种相互作用导致产生干扰模式频谱。此外,使用蒸发技术将MZI涂有铝。通过在PCF部分添加薄金属层,结构的一般热系数会改变,从而提高了器件的灵敏度。实验结果表明,可获得的可见度为13 dBm,灵敏度为250 pm /°C。最后,所提出的结构简单,成本有效并且易于制造。

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