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1×5 optical splitter for TE modes in air-hole photonic crystal based on self-collimation effect

机译:1×5用于基于自加电效应的空穴光子晶体中TE模式的光分路器

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We propose a novel 1×5 optical splitter (OS) for TE modes based on self-collimation effect in an air-hole silicon photonic crystal. The OS consists of two cascaded resonators which is formed with eight beam splitters. The theoretical transmission spectra of the OS is derived with multiple-beam interference theory. From our analysis of transmission spectra, it is found that the transmission spectra at five drop ports will reach the maximum values while the transmission spectra at two through ports reach zero for resonant frequencies. By scanning the radius of a beam splitter, the relationship between the radius and the reflectivity is obtained. Therefore, by changing the radii of the air-hole in eight beam splitters, we can manipulate the output light-intensity ratio at five drop ports to meet requirement. Theoretically, when reflectivity of beam splitters R_1=2/11, R_2=8/11, R_3=5/8, R_4=2/5, R_5=7/12, R_6 =6/7, R_7=1/2, R_8 =2/3, the light intensity ratio at five drop ports is 1:1:1:1:1. When R_1=2/7, R_2=6/7, R_3=1/2, R_4=2/3, R_5=1/7, R_6=6/7, R_7=2/3, R_8 =1/4, the light intensity ratio at five drop ports is 2:2:1:2:3. By means of finite-difference time-domain (FDTD) simulations, the numerical transmission spectra of OS can be figured out. The simulation results are consistent with the theoretical results. Considering micro processing technology of silicon materials is already available, this OS can be used in the photonic integrated circuits because of its small size, whole-silicon material and low insertion loss.
机译:我们提出了一种基于空穴硅光子光子晶体中的自加电效应的TE模式的新颖1×5光分路器(OS)。 OS由两个级联谐振器组成,该谐振器形成有八个分束器。 OS的理论传输光谱与多光束干扰理论导出。从我们对传输光谱的分析,发现五个丢口处的传输光谱将达到最大值,而两个通频以谐振频率达到零。通过扫描分束器的半径,获得半径与反射率之间的关系。因此,通过改变八个分束器中的空气孔的半径,我们可以在五个丢口处操纵输出光强度以满足要求。理论上,当束分离器的反射率R_1 = 2/11时,R_2 = 8/11,R_3 = 5/8,R_4 = 2/5,R_5 = 7/12,R_6 = 6/7,R_7 = 1/2,R_8 = 2/3,五个掉落口的光强度比为1:1:1:1:1。当R_1 = 2/7,R_2 = 6/7,R_3 = 1/2,R_4 = 2/3,R_5 = 1/7,R_6 = 6/7,R_7 = 2/3,R_8 = 1/4,五个滴口的光强度比为2:2:1:2:3。通过有限差分时域(FDTD)模拟,可以朝下OS的数值传输光谱。仿真结果与理论结果一致。考虑到硅材料的微加工技术已经可用,该OS可以在光子集成电路中使用,因为它的尺寸小,整体硅材料和低插入损耗。

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