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Temperature Sensitivity of TE double-negative metamaterial optical sensor

机译:TE双负超材料光学传感器的温度灵敏度

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Optical sensors have wide range of application such as in medicine, astronomy, industry, and others. Sensitivity of symmetric three layered optical waveguide sensor is investigated. The proposed sensor consists of dielectric slab surrounded by metamaterial (MTM) cladding and MTM substrate. MTMs are new artificial materials which have simultaneously negative permittivity e and negative permeability μ Different values of MTMs parameters e and μ are chosen to optimize the sensitivity of the sensor. However, the value of εμ is kept content and equal to 4. The dispersion equation which represents the effective index n_e for transverse electric modes (TE) as a function of slab thickness has been derived. A close form solution of the sensitivity (S) which is defined as the variation of the effective index with respect to Temperature variation is introduced. The sensitivity then numerically calculated as function of the film thickness at different values of Metamaterial parameters. It is found that sensitivity varies with the film thickness and depends on the MTMs parameters. These results are important for designing sensors.
机译:光学传感器具有广泛的应用,例如在医学,天文学,工业等领域。研究了对称三层光波导传感器的灵敏度。拟议的传感器由被超材料(MTM)包层和MTM基板围绕的介电平板组成。 MTM是新型人造材料,同时具有负介电常数e和负磁导率μ,因此选择了MTM参数e和μ的不同值来优化传感器的灵敏度。但是,εμ的值保持在等于4的水平。已经得出了色散方程,该方程代表了横向电模(TE)随板坯厚度变化的有效指标n_e。引入灵敏度(S)的近似形式解,定义为有效指数相对于温度变化的变化。然后,在超材料参数的不同值下,根据膜厚度的函数数值计算灵敏度。发现灵敏度随膜厚度而变化,并且取决于MTM参数。这些结果对于设计传感器很重要。

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