Jiang Weifeng, Miao Jinye, Li Tao
College of Electronic and Optical Engineering, Nanjing University of Posts and Telecommunications, Nanjing, 210023, China.
Sci Rep. 2019 Sep 13;9(1):13223. doi: 10.1038/s41598-019-49763-0.
To further increase the capacity of the optical transmission system, the hybrid mode- and polarisation-division multiplexing (MDM-PDM) technology has been proved to be an efficient approach by multiplexing dual polarisations for each orthogonal eigen mode. A hybrid (de)multiplexer [(De)MUX] is one of the most important fabrics for the hybrid MDM-PDM networks. A compact silicon 10-mode hybrid (De)MUX is proposed based on three cascaded asymmetric directional couplers (ADCs) based sections, three adiabatic tapers, and a polarisation beam splitter (PBS). The phase-matching conditions can be achieved by varying the widths of the bus waveguides for the TM modes and then by varying the widths of the access waveguides for the TE modes. The simulated results show that a compact total coupling length for TM ~ TM and TE ~ TE modes can be achieved to be 55.4 μm. In addition, the total loss of the proposed hybrid (De)MUX can be reduced benefitting from the fewer tapers compared with the conventional cascaded ADCs. The PBS is also optimised with a compact length of 7.0 μm and high extinction ratios of 32.9 dB and 15.4 dB for the TM and TE modes, respectively.
为了进一步提高光传输系统的容量,混合模式和偏振复用(MDM-PDM)技术已被证明是一种有效的方法,即通过对每个正交本征模式复用双偏振。混合复用器/解复用器[(De)MUX]是混合MDM-PDM网络中最重要的结构之一。基于三个级联的非对称定向耦合器(ADC)段、三个绝热锥形波导和一个偏振分束器(PBS),提出了一种紧凑型硅基10模式混合复用器/解复用器。通过改变TM模式总线波导的宽度,然后改变TE模式接入波导的宽度,可以实现相位匹配条件。仿真结果表明,TMTM和TETE模式的紧凑总耦合长度可达55.4μm。此外,与传统的级联ADC相比,由于锥形波导数量较少,所提出的混合复用器/解复用器的总损耗可以降低。PBS也进行了优化,其紧凑长度为7.0μm,TM和TE模式的消光比分别高达32.9dB和15.4dB。