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首页> 外文期刊>Measurement Science & Technology >High-efficiency sorting and measurement of orbital angular momentum modes based on the March-Zehnder interferometer and complex phase gratings
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High-efficiency sorting and measurement of orbital angular momentum modes based on the March-Zehnder interferometer and complex phase gratings

机译:基于3月 - Zehnder干涉仪和复杂相热量的轨道角动量模式的高效分类和测量

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摘要

With the recent exponential developments of high-speed optical communications, traditional optical communications systems are showing their limitations. Over the past decade, the orbital angular momentum (OAM) is attracting more and more research attention, due to its orthogonality between two OAM states, which supplies new degrees of freedom and can be used in fiber or free-space optical communication systems for increasing the communication capacity. Here, we propose a novel OAM de/multiplexing method based on the combination of the March-Zehnder interferometer (MZI) implanted pair of dove prisms (DP) (MZI-DP) and a complex phase gratings (CPG), which can be used to sort and detect multiple OAM modes simultaneously. The fundamental Gaussian beam illuminates the spatial light modulator (SLM) to produce the multiplexed Laguerre-Gaussian modes with different topological charges. The MZI-DP system can sort different OAM modes into odd and even values of topological charges. And then, the designed CPGs perform the concrete measurements of different sorted OAM modes. The propagating directions of different modes are arbitrarily steered by two CPGs in two MZI-DP outputting planes. With this designed system, we can simultaneously sort the OAM modes into odd and even values of topological charges, as well as performing the measurement of a large number of OAM modes without any overlapping between adjacent modes. Furthermore, we have simultaneously demultiplexed 50 different OAM modes and controlled their propagation directions successfully, which shows high-recognition rates and superior performances.
机译:随着最近高速光通信的指数发展,传统的光学通信系统呈现了它们的局限性。在过去十年中,由于其两种OAM状态之间的正交性,它的轨道角动量(OAM)吸引了越来越多的研究注意力,它提供了新的自由度,并且可以用于光纤或自由空间光通信系统以增加通信能力。在这里,我们提出了一种基于3月 - Zehnder干涉仪(MZI)植入的DOVE棱镜(DP)(MZI-DP)和复杂相热(CPG)的组合的新型OAM DE /多路复用方法,以及可以使用同时排序和检测多个OAM模式。基本高斯光束照亮了空间光调制器(SLM),以产生具有不同拓扑电荷的多路复用Laguerre-高斯模式。 MZI-DP系统可以将不同的OAM模式分为奇数甚至值的拓扑电荷。然后,设计的CPGS执行不同排序的OAM模式的具体测量。不同模式的传播方向由两个MZI-DP输出平面中的两个CPG任意转向。通过这种设计的系统,我们可以同时将OAM模式分为奇数甚至值的拓扑电荷,以及执行大量OAM模式的测量,而没有相邻模式之间的任何重叠。此外,我们同时解冻了50种不同的OAM模式,并成功地控制了它们的传播方向,其显示了高识别率和优越的性能。

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