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采用嵌入亚波长光栅和狭缝的非对称定向耦合器的紧凑型宽带硅基偏振分束器。

Compact and broadband silicon-based polarization beam splitter using asymmetric directional couplers embedded with subwavelength gratings and slots.

作者信息

Dai Sijie, Xiao Jinbiao

出版信息

Appl Opt. 2022 Jan 1;61(1):126-134. doi: 10.1364/AO.444129.

Abstract

A compact and broadband silicon-based polarization beam splitter (PBS) is proposed and investigated in detail, where the two arms of the directional coupler (DC) are, respectively, embedded with subwavelength gratings (SWGs) and vertical slots so that field distributions for the TE mode are significantly changed, effectively weakening coupling strength, whereas those for the TM mode are almost unaffected, nearly analogous to the DC with strip waveguides. By carefully optimizing structural parameters, efficient coupling will emerge between the two waveguides for the TM mode, while TE mode will be confined in the SWG-assisted strip waveguide. Consequently, the two modes can be effectively separated, and thus the realization of a PBS is accomplished. Results show that a compact PBS with a coupling length of 6.45 µm is achieved, together with the extinction ratio (ER) of 27.54/31.88 dB, the insertion loss of 0.12/0.14 dB, and the reflection loss of -43.67/-30.50, respectively, for TE/TM mode at the wavelength of 1.55 µm. The bandwidth, for both modes, is up to 230/100 nm when ER is larger than 15/20 dB. In addition, fabrication tolerances to the critical structural parameters and field evolution through the proposed device are analyzed.

摘要

提出并详细研究了一种紧凑的宽带硅基偏振分束器(PBS),其中定向耦合器(DC)的两个臂分别嵌入亚波长光栅(SWG)和垂直槽,使得TE模式的场分布发生显著变化,有效削弱了耦合强度,而TM模式的场分布几乎不受影响,几乎类似于具有条形波导的DC。通过仔细优化结构参数,TM模式在两个波导之间将出现有效耦合,而TE模式将被限制在SWG辅助的条形波导中。因此,两种模式可以有效分离,从而实现了PBS。结果表明,实现了一种耦合长度为6.45 µm的紧凑PBS,在1.55 µm波长下,TE/TM模式的消光比(ER)分别为27.54/31.88 dB,插入损耗为0.12/0.14 dB,反射损耗为-43.67/-30.50。当ER大于15/20 dB时,两种模式的带宽均高达230/100 nm。此外,还分析了对关键结构参数的制造公差以及通过所提出器件的场演化。

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