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Investigation of temperature sensitivity under the influence of coupling strength between a silica core and a satellite waveguide in a photonic crystal fiber with selective infiltration of glycerin

机译:在光子晶体纤维中二氧化硅芯与卫星波导之间的影响下温度敏感性的研究,具有甘油的选择性浸润

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In this report, we carry out simulation and experimental investigations of directional coupler structures with different separations between the glycerin selectively infiltrated channel and silica core of a large mode area Photonic Crystal Fiber (PCF). We assess their coupling characteristics and the corresponding temperature sensing capabilities. The temperature sensitivities of the glycerin selectively infiltrated channel adjacent to the silica core and two periods away from the silica core are -3.115 nm/°C and -2.332 nm/°C respectively. The glycerin selectively infiltrated channel three periods away from the silica core displays -107.8 pm/°C, an order of magnitude less temperature sensitive. The simulation results agree with the experimental results that there is a strong correlation between the coupling strength of the glycerin selectively infiltrated channel and the silica core, affecting its temperature response.
机译:在本报告中,我们对定向耦合器结构进行了模拟和实验研究,在大型区域光子晶体纤维(PCF)的甘油选择性渗透通道和二氧化硅芯之间不同的分离。我们评估其耦合特性和相应的温度传感能力。甘油选择性地渗透到二氧化硅核心附近的通道的温度敏感性和远离二氧化硅核心的两个时段分别为-3.115nm /℃和-2.332nm /℃。甘油选择性地渗入通道三个时段远离二氧化硅核心显示器-107.8 PM /℃,较小的温度敏感。仿真结果与实验结果一致,即甘油选择性渗透通道和二氧化硅芯的偶联强度之间存在强烈相关性,影响其温度响应。

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