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Photonic crystal with epsilon negative and double negative materials as an optical sensor

机译:用ε负和双负材料作为光传感器的光子晶体

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Two ternary photonic crystals are proposed for sensing applications. The first one is composed of an air layer as an analyte sandwiched between two double negative material (DNM) layers whereas the second one consists of an air layer sandwiched between two epsilon negative material (ENM) layers. The transmission spectrum is studied for two different values of the refractive index of the analyte layer with Delta n = 0.01. A specific peak in the transmission spectrum is observed and the wavelength at which the peak occurs is determined. The wavelength shift due to any change in the index of the analyte layer is also determined. The effect of varying the parameters of the DNM and ENM on the sensitivity of the sensor is discussed. It is found that the sensitivity of the structure ENM/air/ENM is much greater than that of the structure DNM/air/DNM and it is estimated as 26 times of the sensitivity of the latter structure.
机译:提出了两种三元光子晶体用于传感应用。第一个由夹在两个双负材料(DNM)层之间的作为分析物的空气层组成,而第二个由夹在两个ε负材料(ENM)层之间的空气层组成。对于Δn= 0.01的分析物层的两个不同折射率值,研究了透射光谱。观察到透射光谱中的特定峰,并确定出现该峰的波长。还确定了由于分析物层的折射率的任何变化引起的波长偏移。讨论了更改DNM和ENM参数对传感器灵敏度的影响。已经发现,结构ENM / air / ENM的灵敏度比结构DNM / air / DNM的灵敏度大得多,并且估计为后者结构的灵敏度的26倍。

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