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Orbital angular momentum (OAM) conversion and multicasting using N-core supermode fiber

机译:使用N芯超模光纤的轨道角动量(OAM)转换和多播

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摘要

We propose and numerically demonstrate a conversion and multicasting scheme of orbital angular momentum (OAM) states by using N-core supermode fiber (NCSF), where the topological charges of converted OAM states mainly depend on the injected OAM state and the number of fiber cores. The conversion efficiency (CE) of the converted OAM states could be optimized by properly designing the fiber structure. Take N = 6 as an example, ~37% CE could be achieved at telecom bands. Moreover, even for a fabricated NCSF, the CE could be dynamically changed by stretching the fiber or by adjusting the refractive index of the fiber cores through external control of the environmental conditions. Meanwhile, OAM multicasting could also be realized in the designed NCSF. The crosstalk between the multicasted OAM channels and their neighboring ones are assessed to be less than −30 dB. The proposed fiber-based OAM conversion and multicasting system is compatible with the existing optical fiber communication systems, showing potential applications in the future.
机译:我们提出并用数值方法证明了使用N核超模光纤(NCSF)进行的轨道角动量(OAM)状态的转换和多播方案,其中转换后的OAM状态的拓扑电荷主要取决于注入的OAM状态和光纤芯数。可以通过适当设计光纤结构来优化转换后的OAM状态的转换效率(CE)。以N = 6为例,在电信频段可以达到〜37%的CE。此外,即使对于已制成的NCSF,也可以通过拉伸纤维或通过外部控制环境条件来调节纤芯的折射率来动态更改CE。同时,在设计的NCSF中也可以实现OAM组播。估计多播OAM信道与其相邻信道之间的串扰小于-30dB。所提出的基于光纤的OAM转换和多播系统与现有的光纤通信系统兼容,显示了未来的潜在应用。

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