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Wireless enabled multi gas sensor system based on photonic crystals

机译:基于光子晶体的无线化多气体传感器系统

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In this paper we introduce a multi gas sensor system based on refractive index changes in a 2D slab photonic crystal. The sensor is formed by a L3 resonant cavity sandwiched between two W1.06 waveguides in the photonic crystal. The sensor configuration is similar to an Add-Drop filter structure. The transmission spectrums of the sensor with different ambient refractive indices ranging from n = 1.0 to n = 1.1 are calculated. The simulation results show that a change in ambient RI of Δn = 0.0008 is apparent with a corresponding change in output wavelength of the sensor of 2.4 nm. The properties of the sensor are simulated using the 3D finite-difference time-domain (FDTD) method. The Q-factor of the sensor is also optimized, with highest values reaching over 3 0,000. The sensor sy stem i s hybrid integrated with a wireless RF chip which processes the sensor data and transmits them in effect turning the entire system into a wireless sensor mote.
机译:在本文中,我们引入了基于2D板光子晶体中的折射率变化的多气体传感器系统。传感器由夹在光子晶体中的两个W1.06波导之间的L3谐振腔中。传感器配置类似于添加滤波器结构。计算具有从n = 1.0至n = 1.1的不同环境折射率的传感器的传感光谱。仿真结果表明,Δn= 0.0008的环境RI的变化是明显的,其输出波长的输出波长为2.4nm。使用3D有限差分时间域(FDTD)方法模拟传感器的特性。传感器的Q系数也得到了优化,最高值达到30,000多个。传感器Sy STEP I S Hybrid与无线RF芯片集成,该无线RF芯片处理传感器数据并将其效果转换为无线传感器MOTE。

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