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High extinction ratio and low loss polarization beam splitter based on multimode interference for PICs

机译:基于Multimode干扰的PICS的高消光比和低损耗偏振分频带分离器

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A polarization beam splitter (PBS) with a high extinction ratio that is based on multimode interference (MMI) is proposed and experimentally demonstrated on a silicon-on-insulator platform. The PBS is designed using cascaded MMI to enhance the extinction ratio (ER) and minimize insertion loss (IL) compared to a conventional MMI structure. The proposed device has a high extinction ratio (22.3 dB for TE and 25.6 dB for TM) and a lowinsertion loss (0.7 dB for TE and 0.1 dB for TM) at a wavelength of 1550 nm while the device supports a broad bandwidth of 60 nm (ER > 16 dB) for both polarizations over a wavelength between 1520-1580 nm. Moreover, the eigenmode expansion method shows that the device has a large fabrication tolerance of an MMI width +/- 40 nm and a length +/- 1500 nm. The proposed PBS can be used in on-chip silicon photonic integrated circuits for polarization division multiplexing. (C) 2020 Optical Society of America
机译:提出了基于多模干扰(MMI)的具有高消光比的偏振分束器(PBS),并在绝缘体上进行实验证明。 与传统MMI结构相比,PBS使用级联MMI设计以增强消光比(ER)并最小化插入损耗(IL)。 所提出的装置具有高消光比(TE和22.3dB的TM,TM的22.3dB),并且在1550nm的波长下,在1550nm的波长下为低电平的损耗(TM和0.1dB的0.7dB),而该装置支持60nm的宽带宽 (ER> 16 dB)对于在1520-1580nm之间的波长的两极化。 此外,特征模型扩展方法表明,该装置具有MMI宽度+/- 40nm的大的制造公差和长度+/-1500nm。 所提出的PBS可用于片上硅光子集成电路,用于偏振分割多路复用。 (c)2020美国光学学会

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    《Applied optics》 |2020年第11期|共7页
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