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首页> 外文期刊>IEEE sensors journal >Sensing Characteristics of Arc-Induced Long Period Gratings in Polarization-Maintaining Panda Fiber
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Sensing Characteristics of Arc-Induced Long Period Gratings in Polarization-Maintaining Panda Fiber

机译:保偏熊猫光纤中电弧诱导的长周期光栅的传感特性

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摘要

We present and discuss an investigation of the sensing features of long period gratings fabricated in a polarization-maintaining Panda optical fiber, by means of the electric arc discharge technique. In particular, the investigation regards the resonant wavelength shift of first three cladding modes as function of three environmental parameters, such as strain, temperature, and surrounding medium refractive index. We also investigate and discuss the variations of the sensing behavior as a function of the polarization input state. The achieved results show that the sensitivity of each resonant wavelength to environmental parameters is modulated by the cladding mode order and by polarization input light, with some appealing characteristics. For instance, the lowest order cladding mode in slow polarization state is practically insensitive to temperature and surrounding refractive index, but sensitive to strain. Temperature and strain sensitivities show opposite signs with the input light polarization. Sensitivity to surrounding refractive index is higher in the case of fast polarization state. These results represent a concrete perspective of the possibility that this device can act as a 3-parameter sensor.
机译:我们提出并讨论了一种通过电弧放电技术在保偏熊猫光纤中制造的长周期光栅的传感特性的研究。特别地,研究将前三个包层模式的谐振波长偏移视为三个环境参数(例如应变,温度和周围介质折射率)的函数。我们还将研究和讨论传感行为随偏振输入状态的变化。所获得的结果表明,每个谐振波长对环境参数的灵敏度都受到包层模式阶数和偏振输入光的影响,具有一些吸引人的特性。例如,处于慢极化状态的最低阶包层模式实际上对温度和周围折射率不敏感,但对应变敏感。温度和应变敏感性与输入光的偏振方向相反。在快速极化状态下,对周围折射率的敏感性较高。这些结果代表了该设备可以用作三参数传感器的可能性的具体观点。

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