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Compact polarization beam splitter for silicon-based slot waveguides based on an asymmetrical multimode interference coupler

机译:基于非对称多模干扰耦合器的基于硅基槽波导的紧凑型偏振束分离器

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A compact polarization beam splitter (PBS) for silicon-based slot waveguides is proposed based on a multimode interference coupler, where an asymmetrical multimode waveguide (AMW), cut by a right angle at one corner, is employed to efficiently separate the TE and TM modes. With the unique modal properties of the slot waveguides and corresponding optimized designs, the input TE mode can almost pass through the AMW and then enter into the bar port, while a mirror image is formed at the cross port for the input TM mode due to the self-imaging effect. Meanwhile, tapered waveguide structures and S-bend are incorporated into the designed PBS for further enhancing the performance. According to the numerical results, a PBS with an AMW of 2.3 μm in length is achieved, where the extinction ratios are 16.6 and 20.9 dB, respectively, for TE and TM modes, and the insertion losses are 1.37 and 0.81 dB, respectively, at the wavelength of 1.55 μm. For keeping extinction ratios over 15 and 20 dB for TE and TM modes, the bandwidths are around 59 and 73 nm, respectively, both covering the entire C-band. In addition, field evolution along the propagation distance through the PBS is also demonstrated.
机译:基于多模干扰耦合器提出了一种基于硅基槽波导的紧凑型偏振分束器(PBS),其中,在一个角落在一个角处的直角切割的不对称多模波导(AMW)中,用于有效地分离TE和TM模式。利用槽波导的独特模态性能和相应的优化设计,输入TE模式几乎可以通过AMW,然后进入条形端口,而由于输入TM模式的交叉端口处形成镜像。自成像效果。同时,锥形波导结构和S弯曲掺入设计的PBS中,以进一步增强性能。根据数值结果,实现了长度为2.3μm的AMW的PBS,其中消光比分别为TE和TM模式,分别为1.37和0.81 dB,分别为1.37和0.81dB波长为1.55μm。为了使TE和TM模式超过15和20 dB,带宽分别为59和73nm,覆盖整个C波段。此外,还证明了通过PBS的传播距离的场演变。

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