Ying Zhoufeng, Wang Guanghui, Zhang Xuping, Ho Ho-pui, Huang Ying
Opt Lett. 2015 May 1;40(9):2134-7. doi: 10.1364/OL.40.002134.
An ultracompact and broadband polarization beam splitter (PBS) based on the polarization-dependent critical guiding condition of an asymmetrical directional coupler is proposed. The device consists of a pair of silicon waveguides with different height and width. Due to the different cutoff conditions for the TE and TM polarization modes, it is possible to have the TM mode guided in one waveguide while the TE mode is supported in both. Therefore, only the phase-matching condition for the cross-coupling of the TE mode needs to be considered. This approach not only simplifies the design procedures but also significantly improves device performance with smaller total length and larger bandwidth. Finally, regardless of the contribution of S-bend waveguides, our proposed PBS has a coupling region as short as 0.2 μm, which is the shortest reported until now. The simulation result shows that the extinction ratios for the TE and TM polarization are 13.5 and 16.6 dB at their respective output ports, and their insertion losses are 0.29 and 0.13 dB, respectively. Numerical simulations also show that the device offers a very large bandwidth (∼140 nm) with large extinction ratio (>10 dB) and low insertion loss (<1 dB).
提出了一种基于非对称定向耦合器的偏振相关临界导波条件的超紧凑型宽带偏振分束器(PBS)。该器件由一对具有不同高度和宽度的硅波导组成。由于TE和TM偏振模式的截止条件不同,有可能使TM模式在一个波导中导波,而TE模式在两个波导中都能得到支持。因此,只需要考虑TE模式交叉耦合的相位匹配条件。这种方法不仅简化了设计过程,而且通过更小的总长度和更大的带宽显著提高了器件性能。最后,不考虑S形波导的影响,我们提出的PBS的耦合区域短至0.2μm,这是迄今为止报道的最短的。仿真结果表明,TE和TM偏振在各自输出端口的消光比分别为13.5dB和16.6dB,插入损耗分别为0.29dB和0.13dB。数值模拟还表明,该器件具有非常大的带宽(约140nm),消光比大(>10dB),插入损耗低(<1dB)。