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Investigation of cladding thicknesses on silver SPR based side-polished optical fiber refractive-index sensor

机译:基于银SPR的侧抛光光纤折射率传感器的包层厚度研究

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A single mode optical fiber modified using side-polishing method is applied as a sensor based on surface plasmon resonance (SPR) principles. The SPR sensor was designed using side-polished optical fiber of which the cladding was symmetrically removed and coated with different thicknesses of embedded silver film. The amount of cladding removed was based on the insertion power loss during the polishing process, where losses were recorded at 0.65?dB corresponding to 20?μm thickness of remaining cladding and 1.8?dB refers to no cladding respectively. Finite Difference Time Domain (FDTD) simulation was used to investigate the effects of this configuration. The system has been constructed using different refractive indices of liquid. Silver thin layer thickness of 40?nm found to be the most desirable after it display better sensitivity in sensing mechanism. The application of 40?nm-thick Ag has been also coated on the fiber with no cladding, which shows higher sensitivity of ~2166?nm/refractive index unit (RIU) and 208.333?nm/refractive index unit (RIU) using distilled water (n?=?1.333) and alcohol (n?=?1.345), respectively. The SPR dip transmission wavelength was recorded as ~460?nm and ~530?nm for both fiber conditions at active sensing area as 3?mm length operating at wavelength range of 300–1100?nm. The system has the advantages of being low-cost and applicable in bio-sensors.
机译:基于表面等离振子共振(SPR)原理,将使用侧抛光法修改的单模光纤用作传感器。 SPR传感器是使用侧面抛光的光纤设计的,该光纤的包层被对称地去除,并涂有不同厚度的嵌入式银膜。去除的包层数量基于抛光过程中的插入功率损耗,其中记录的损耗为0.65?dB,对应于剩余包层的厚度为20?m,而1.8?dB分别表示无包层。时域有限差分(FDTD)仿真用于研究此配置的影响。该系统已使用不同的液体折射率构建。在感测机制中显示出更好的灵敏度之后,发现40μnm的银薄层厚度是最理想的。 40?nm厚的Ag也被涂覆在无包层的光纤上,使用蒸馏水显示出更高的灵敏度,分别为〜2166?nm /折射率单位(RIU)和208.333?nm /折射率单位(RIU)。 (n = 1.333)和醇(n = 1.345)。在有源传感区域,两种光纤条件下,在300-1100?nm的波长范围内,SPR透射透射波长分别记录为〜460?nm和〜530?nm。该系统具有成本低廉并且可应用于生物传感器的优点。

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