Li Mei-xuan, Dong Lian-he, Zhang Lei, Leng Yan-bing
Guang Pu Xue Yu Guang Pu Fen Xi. 2016 Dec;36(12):4072-5.
In fiber-optic communications, in order to achieve more data channels in the wavelength division multiplexing (WDM) system without changing the modulation wavelength range, a new type of small-sized narrowband polarizing beam splitter was designed. It can be used for data communication network expansion and improve the Signal to Noise Ratio (SNR) of the optical signal. Two kinds new film system designed were deposited on the polarizing beam splitter. One layer is narrowband filter film, while the other layer is polarizing beam splitter film. TFCalc software was used for simulation analysis, and the results shown that the bandwidth of the narrowband filter film was about 0.4 nm, and the permeability of p light from the polarizing beam splitter film was better than 99.8% in the range of 1 530~1 560 nm. Based on the above film system design, two groups film system was made on BK7 optical glass. In the experiment, light through film was spectral analysis with Agilent 8164-A type optical measuring instrument. Experimental results show that the actual bandwidth of the narrowband filter film is better than 0.4 nm, gain flatness is not less than -0.05 dB. It has a narrower bandwidth compared to the existing common 0.8 nm filter film, and it can be realized to increase the amount of data channels in the wavelength division multiplexing system with the same modulation wavelength range. Actual transmittance of p light was 99.6% through polarizing filter film, and it’s slightly lower than the simulated values, but it remains better than the design requirements. Compared to conventional polarizing beam splitter, its optical signal was stronger, and it has a higher SNR. In summary, the polarizing beam splitter has better application value and practical significance.
在光纤通信中,为了在不改变调制波长范围的情况下,在波分复用(WDM)系统中实现更多的数据通道,设计了一种新型的小尺寸窄带偏振分束器。它可用于数据通信网络扩展,并提高光信号的信噪比(SNR)。在偏振分束器上沉积了两种新设计的薄膜系统。一层是窄带滤光膜,另一层是偏振分束膜。使用TFCalc软件进行模拟分析,结果表明窄带滤光膜的带宽约为0.4nm,偏振分束膜在1530~1560nm范围内p光的透过率优于99.8%。基于上述薄膜系统设计,在BK7光学玻璃上制作了两组薄膜系统。实验中,用安捷伦8164 - A型光学测量仪对透过薄膜的光进行光谱分析。实验结果表明,窄带滤光膜的实际带宽优于0.4nm,增益平坦度不小于 - 0.05dB。与现有的常见0.8nm滤光膜相比,其带宽更窄,并且在相同的调制波长范围内能够实现增加波分复用系统中的数据通道数量。p光通过偏振滤光膜的实际透过率为99.6%,略低于模拟值,但仍优于设计要求。与传统的偏振分束器相比,其光信号更强,信噪比更高。综上所述,该偏振分束器具有较好的应用价值和实际意义。