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Avoided-crossing-based ultrasensitive photonic crystal fiber refractive index sensor

机译:基于避免交叉的超灵敏光子晶体光纤折射率传感器

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摘要

We propose and demonstrate an ultrasensitive photonic crystal fiber refractive index sensor by introducing the avoided-crossing effect in a bent-controlled fluid-filled photonic-bandgap fiber (FF-PBGF). By controlling the bend radius of the FF-PBGF, resonant couplings between the fundamental core mode and the cladding modes are realized and transmission notches are observed in the transmission band of the FF-PBGF. By changing the refractive index or temperature of the bent FF-PBGF, a sensitivity of 32,400 nm per refractive index unit (or 13.1 nm/(deg C)) is achieved, which is the highest for a fiber device to date, to our best knowledge.
机译:我们通过在弯曲控制的填充流体的光子带隙光纤(FF-PBGF)中引入避免的交叉效应,提出并演示了一种超灵敏的光子晶体光纤折射率传感器。通过控制FF-PBGF的弯曲半径,可以实现基本核心模式和包层模式之间的共振耦合,并且可以在FF-PBGF的传输频带中观察到传输陷波。通过更改弯曲的FF-PBGF的折射率或温度,可以获得每个折射率单位32,400 nm(或13.1 nm /(℃))的灵敏度,这是迄今为止光纤设备中最高的。知识。

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