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Study on simultaneous sensing of gas concentration and temperature in one-dimensional photonic crystal

机译:一维光子晶体中气体浓度和温度的同时传感研究

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Based on the mixed effects of the defect mode and interface state, a one-dimensional (1D) photonic crystal (PC) structure used for simultaneous gas concentration and temperature measurement is proposed. Using multiple physical field numerical module of the finite element method, the reflection spectrum with two relatively independent peaks is formed. And the wavelengths of the reflection peaks can be shifted when the concentration of the gas filled in the photonic crystal and environment temperature are changed. The defect layer thickness, metal layer thickness and period of photonic crystal are optimized. Taking the toluene as temperature-sensing medium, and the mixture of air and ethylene as gas-sensing medium, the relationships between the reflection peaks and related physical quantities are studied. Gas concentration and temperature can be measured by analyzing the relative shift of position of two reflection peaks in reflection spectrum. The results show that gas sensitivity is 500pm/1% ranging from 0% to 3% and its Q factor is 471.4. Temperature sensitivity is 88.7pm/℃ ranging from -20℃ to 70℃ and its Q factor is 415.7. The structure is simple, highly sensitive, and dual-parameter sensing. The study has reference value for simultaneously detecting harmful gas leakage and temperature in the polluted environment.
机译:基于缺陷模式和界面状态的混合效应,提出了一种用于同时进行气体浓度和温度测量的一维(1D)光子晶体(PC)结构。使用有限元方法的多个物理场数值模块,形成具有两个相对独立的峰的反射光谱。当填充在光子晶体中的气体的浓度和环境温度改变时,反射峰的波长可以移动。优化了缺陷层的厚度,金属层的厚度和光子晶体的周期。以甲苯为温度传感介质,以空气和乙烯的混合物为气体传感介质,研究了反射峰与相关物理量之间的关系。气体浓度和温度可以通过分析反射光谱中两个反射峰的相对位置来测量。结果表明,气体敏感性为500pm / 1%,范围为0%至3%,其Q因子为471.4。温度敏感度为-20℃至70℃,为88.7pm /℃,Q因子为415.7。该结构简单,高度灵敏,并且具有双参数感测。该研究对于同时检测污染环境中有害气体的泄漏和温度具有参考价值。

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