Temperature tuning of band edge resonant modes in one-dimensional photonic crystals

K. Yeong, K. Yeap, Chee-Leong Lee, L. Yik
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Abstract

The transmission characteristics of Si-based 1D photonic crystals was investigated using transfer matrix method. As the temperature and wavelength dependence of Si refractive index induces band edge resonant modes that are temperature tunable, the average wavelength shift per Kelvin of the resonant mode with the largest group index was determined in the vicinity of the band edge. A general linear chirp structure consisting of a constant and chirp component was implemented. Using the simulated annealing algorithm, the structural parameters were optimized and it was found that the average wavelength shift per Kelvin of the band edge resonant mode can be enhanced by 28.9% with high transmission. It was also found that spatial chirping does not affect the wavelength shift. The enhancement was achieved by a uniform increase of PC layer widths. Tunable band edge resonant modes may be exploited in designing optical thermal sensing devices.
一维光子晶体带边谐振模式的温度调谐
采用传递矩阵法研究了硅基一维光子晶体的传输特性。由于Si折射率对温度和波长的依赖导致了带边谐振模式的温度可调,因此确定了在带边附近具有最大群折射率的谐振模式每开尔文的平均波长位移。实现了一个由常数和啁啾分量组成的一般线性啁啾结构。利用模拟退火算法对结构参数进行优化,发现在高透射的情况下,带边谐振模式每开尔文的平均波长位移提高了28.9%。研究还发现,空间啁啾不影响波长漂移。增强是通过均匀增加PC层宽度来实现的。可调谐带边谐振模式可用于光学热传感器件的设计。
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