Zhu Long, Zhu Guoxuan, Wang Andong, Wang Lulu, Ai Jianzhou, Chen Shi, Du Cheng, Liu Jie, Yu Siyuan, Wang Jian
Opt Lett. 2018 Apr 15;43(8):1890-1893. doi: 10.1364/OL.43.001890.
The space domain is regarded as the only known physical dimension of lightwaves left to be exploited for optical communications. Very recently, much research effort has been devoted to using orbital angular momentum (OAM) spatial modes to increase the transmission capacity in fiber-optic communications. However, long-distance low-crosstalk high-order OAM multiplexing transmission in fiber is quite challenging. Here we design and fabricate a graded-index ring-core fiber to effectively suppress radially high-order modes and greatly separate high-order OAM mode groups. By exploiting high-order OAM mode group multiplexing, together with wavelength-division multiplexing (WDM), i.e., 12.5 Gbaud 8-array quadrature amplitude modulation (8-QAM) signals over OAM and OAM modes on 112 WDM channels (224 individual channels), we experimentally demonstrate 8.4 Tbit/s data transmission in an 18 km OAM fiber with low crosstalk. Multiple-input multiple-output digital signal processing is not required in the experiment because of the large high-order mode group separation of the OAM fiber. The demonstrations may open a door to find more fiber-optic communication and interconnect applications exploiting high-order OAM modes.
空间域被视为光波中唯一已知的尚未被用于光通信的物理维度。最近,人们投入了大量研究精力来利用轨道角动量(OAM)空间模式提高光纤通信中的传输容量。然而,光纤中的长距离、低串扰高阶OAM复用传输极具挑战性。在此,我们设计并制造了一种渐变折射率环形芯光纤,以有效抑制径向高阶模式,并极大地分离高阶OAM模式组。通过利用高阶OAM模式组复用,结合波分复用(WDM),即在112个WDM信道(224个独立信道)上通过OAM和OAM模式传输12.5 Gbaud 8阵列正交幅度调制(8-QAM)信号,我们在18 km的OAM光纤中通过实验证明了具有低串扰的8.4 Tbit/s数据传输。由于OAM光纤具有较大的高阶模式组分离度,实验中无需多输入多输出数字信号处理。这些演示可能为探索更多利用高阶OAM模式的光纤通信和互连应用打开一扇门。