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首页> 外文期刊>Journal of Lightwave Technology >Magnetic Fluid-Infiltrated Anti-Resonant Reflecting Optical Waveguide for Magnetic Field Sensing Based on Leaky Modes
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Magnetic Fluid-Infiltrated Anti-Resonant Reflecting Optical Waveguide for Magnetic Field Sensing Based on Leaky Modes

机译:基于泄漏模式的磁流体渗透反共振反射光波导,用于磁场感应

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摘要

A magnetic fluid (MF)-infiltrated antiresonant reflecting optical waveguide has been fabricated for the magnetic field sensing based on resonant leaky modes. In a hollow core photonic crystal fiber, the MF is selectively infiltrated into one hollow hole in the air cladding. A Fabry–Perot resonator can be formed between the MF and the silica cladding. Both the resonant condition and the reflectivity of the Fabry–Perot resonator are changed under different magnetic field, which can be measured through the wavelength shift and transmission power at the dip wavelength. The sensitivities of up to 109 pm/Oe and 0.064 dB/Oe are achieved for methods of wavelength shift and transmission power at the dip wavelength. The antiresonant reflecting optical waveguides are widely used for the accurate measurement of magnetic field in the fields of transportation, medicine, smart grids, and so on.
机译:已经制造了一种渗透了磁流体(MF)的反共振反射光波导,用于基于共振泄漏模式的磁场感测。在空心光子晶体光纤中,MF有选择地渗透到空气包层中的一个空心孔中。可以在MF和二氧化硅覆层之间形成一个Fabry-Perot谐振器。在不同的磁场下,法布里-珀罗谐振器的谐振条件和反射率都会发生变化,这可以通过在倾角波长处的波长偏移和传输功率来测量。对于在倾斜波长处的波长偏移和发射功率方法,灵敏度高达109 pm / Oe和0.064 dB / Oe。反共振反射光波导广泛用于交通,医药,智能电网等领域的磁场的精确测量。

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