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Integrated optical modulator manipulating the polarization and rotation handedness of Orbital Angular Momentum states

机译:集成光学调制器可控制轨道角动量态的偏振和旋转惯性

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摘要

Recent studies demonstrated that the optical channels encoded by Orbital Angular Momentum (OAM) are capable candidates for improving the next generation of communication systems. OAM states can enhance the capacity and security of high-dimensional communication channels in both classical and quantum regimes based on optical fibre and free space. Hence, fast and precise control of the beams encoded by OAM can provide their commercial applications in the compatible communication networks. Integrated optical devices are good miniaturized options to perform this issue. This paper proposes a numerically verified integrated high-frequency electro-optical modulator for manipulation of the guided modes encoded in both OAM and polarization states. The proposed modulator is designed as an electro-optically active Lithium Niobate (LN) core photonic wire with silica as its cladding in a LN on Insulator (LNOI) configuration. It consists of two successive parts; a phase shifter to reverse the rotation handedness of the input OAM state and a polarization converter to change the horizontally polarized OAM state to the vertically polarized one. It is shown that all four possible output polarization-OAM encoded states can be achieved with only 6 V and 7 V applied voltages to the electrodes in the two parts of the modulator.
机译:最近的研究表明,由轨道角动量(OAM)编码的光通道是改进下一代通信系统的有力候选者。 OAM状态可以在基于光纤和自由空间的经典和量子方式下增强高维通信通道的容量和安全性。因此,由OAM编码的波束的快速和精确控制可以在兼容的通信网络中提供其商业应用。集成光学设备是执行此问题的不错的小型选择。本文提出了一种经过数值验证的集成高频电光调制器,用于处理以OAM和偏振态编码的导模。拟议的调制器设计为电活性铌酸锂(LN)芯光子线,以二氧化硅作为绝缘体(LNOI)上LN的包层。它由两个连续的部分组成;移相器使输入的OAM状态的旋转惯性反转,极化转换器将水平极化的OAM状态改变为垂直极化的状态。结果表明,仅向调制器两部分中的电极施加6 V和7 V的电压就可以实现所有四种可能的输出极化OAM编码状态。

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