首页> 外文会议>Conference on Nanophotonics, Nanostructure, and Nanometrology; 20071112-14; Beijing(CN) >An ultracompact refractive index gas-sensor based on photonic crystal microcavity
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An ultracompact refractive index gas-sensor based on photonic crystal microcavity

机译:基于光子晶体微腔的超紧凑型折射率气体传感器

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An ultracompact gas-sensor based on the two-dimensional photonic crystal microcavity is presented. The sensor is formed by a point-defect resonant cavity. The transmission spectrums of the sensor with different ambient refractive indices ranging from n = 1.0 to n = 1.01 are calculated. The calculation results show that a change in ambient refractive index of Δn = 1 × 10~(-4) is apparent, the sensitivity of the sensor (Δλ/Δn) is achieved with 433nm/RIU(when lattice constant a = 520nm), where RIU means refractive index unit . The properties of the sensor are analyzed and calculated using the plane-wave expansion (PWE) method and simulated using the finite-difference time-domain (FDTD) method. Using the fabry-Perot cavity mode, the performances of the refractive index sensor are analyzed theoretically. The sensor is optimized using the photonic crystal waveguide structure and simulated using the FDTD method. As the small sensing area (~10 μm~2) of the device would require only ~1/fL sample analyte, these ultracompact gas sensors would be widely used in little sample analyte in gas measurement.
机译:提出了一种基于二维光子晶体微腔的超紧凑型气体传感器。传感器由点缺陷谐振腔形成。计算了具有从n = 1.0到n = 1.01的不同环境折射率的传感器的透射光谱。计算结果表明,环境折射率变化Δn= 1×10〜(-4)明显,当433nm / RIU(晶格常数a = 520nm)时,传感器的灵敏度(Δλ/Δn)得以实现,其中RIU表示折射率单位。使用平面波扩展(PWE)方法分析和计算传感器的属性,并使用时域有限差分(FDTD)方法进行仿真。使用法布里-珀罗腔模式,从理论上分析了折射率传感器的性能。该传感器使用光子晶体波导结构进行了优化,并使用FDTD方法进行了仿真。由于该设备的检测区域很小(〜10μm〜2)仅需要约〜1 / fL样品分析物,因此这些超紧凑型气体传感器将广泛用于气体测量中的少量样品分析物。

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