Ndagano Bienvenu, Mphuthi Nokwazi, Milione Giovanni, Forbes Andrew
Opt Lett. 2017 Oct 15;42(20):4175-4178. doi: 10.1364/OL.42.004175.
There is interest in using orbital angular momentum (OAM) modes to increase the data speed of free-space optical communication. A prevalent challenge is the mitigation of mode-crosstalk and mode-dependent loss that is caused by the modes' lateral displacement at the data receiver. Here, the mode-crosstalk and mode-dependent loss of laterally displaced OAM modes (LG, LG) are experimentally compared to that of a Hermite-Gaussian (HG) mode subset (HG, HG). It is shown, for an aperture larger than the modes' waist sizes, some of the HG modes can experience less mode-crosstalk and mode-dependent loss when laterally displaced along a symmetry axis. It is also shown, over a normal distribution of lateral displacements whose standard deviation is 2× the modes' waist sizes, on average, the HG modes experience 66% less mode-crosstalk and 17% less mode-dependent loss.
人们对利用轨道角动量(OAM)模式来提高自由空间光通信的数据速度很感兴趣。一个普遍存在的挑战是减轻模式串扰和模式相关损耗,这些损耗是由模式在数据接收器处的横向位移引起的。在此,将横向位移的OAM模式(LG,LG)的模式串扰和模式相关损耗与厄米 - 高斯(HG)模式子集(HG,HG)的进行了实验比较。结果表明,对于大于模式束腰尺寸的孔径,一些HG模式在沿对称轴横向位移时可经历较少的模式串扰和模式相关损耗。还表明,在横向位移的正态分布上,其标准差为模式束腰尺寸的2倍,平均而言,HG模式的模式串扰减少66%,模式相关损耗减少17%。