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首页> 外文期刊>IEEE sensors journal >SPR-Based Fiber Optic Sensor Using IMO Thin Film: Towards Wide Wavelength Tunability From Visible to NIR
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SPR-Based Fiber Optic Sensor Using IMO Thin Film: Towards Wide Wavelength Tunability From Visible to NIR

机译:使用IMO薄膜的基于SPR的光纤传感器:实现从可见光到NIR的宽波长可调性

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摘要

Due to existence of free electrons, conducting metal oxides (CMOs) such as indium molybdenum oxide, can support surface plasmon resonance (SPR) at the interface of CMO and dielectric. This research provides, theoretically, the first implementation of indium molybdenum oxide (IMO) as plasmonic layer in SPR fiber optic sensor. We demonstrate how changing the oxygen contents during IMO layer deposition could tune the operational wavelength of sensing probe in a wide range from visible to MR which has a great significance in many biological and chemical environmental applications. Moreover, sensitivity and figure of merit of the proposed sensor have been calculated and compared for IMO thin films prepared at different oxygen contents.
机译:由于存在自由电子,因此导电金属氧化物(CMO)(例如氧化铟钼)可以在CMO和介电质的界面处支持表面等离振子共振(SPR)。从理论上讲,这项研究提供了将氧化铟钼(IMO)用作等离子层在SPR光纤传感器中的首次实现。我们演示了在IMO层沉积过程中如何改变氧含量,可以在从可见光到MR的宽范围内调节传感探头的工作波长,这在许多生物和化学环境应用中具有重要意义。此外,针对不同氧含量制备的IMO薄膜,已对拟议传感器的灵敏度和品质因数进行了计算和比较。

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