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High-capacity millimetre-wave communications with orbital angular momentum multiplexing

机译:轨道角动量复用的大容量毫米波通信

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One property of electromagnetic waves that has been recently explored is the ability to multiplex multiple beams, such that each beam has a unique helical phase front. The amount of phase front ‘twisting’ indicates the orbital angular momentum state number, and beams with different orbital angular momentum are orthogonal. Such orbital angular momentum based multiplexing can potentially increase the system capacity and spectral efficiency of millimetre-wave wireless communication links with a single aperture pair by transmitting multiple coaxial data streams. Here we demonstrate a 32-Gbit?s?1 millimetre-wave link over 2.5 metres with a spectral efficiency of ~16?bit?s?1?Hz?1 using four independent orbital–angular momentum beams on each of two polarizations. All eight orbital angular momentum channels are recovered with bit-error rates below 3.8 × 10?3. In addition, we demonstrate a millimetre-wave orbital angular momentum mode demultiplexer to demultiplex four orbital angular momentum channels with crosstalk less than ?12.5?dB and show an 8-Gbit?s?1 link containing two orbital angular momentum beams on each of two polarizations.
机译:最近已探究的电磁波的一种特性是能够复用多个波束,这样每个波束都具有独特的螺旋相位前锋。相前“扭曲”的数量表示轨道角动量状态数,并且具有不同轨道角动量的光束是正交的。这种基于轨道角动量的复用可以通过传输多个同轴数据流来潜在地提高具有单个孔径对的毫米波无线通信链路的系统容量和频谱效率。在这里,我们演示了2.5米长的32 Gb?s ?1 毫米波链路,其频谱效率约为〜16?bit?s ?1 ?Hz ?1 在两个极化的每一个上使用四个独立的轨道角动量束。恢复了所有八个轨道角动量通道,误码率低于3.8×10 ?3 。此外,我们演示了毫米波轨道角动量模式多路分解器,用于对串扰小于≤12.5?dB的四个轨道角动量信道进行解复用,并显示了包含两个轨道的8-Gbit?s ?1 链路两个极化的每一个上都有角动量束。

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