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合肥工业大学计算机与信息学院,安徽合肥 230009
Received:08 February 2021,
Revised:2021-06-16,
Published:25 October 2021
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周红平,潘珍珍,郭凯等.OAM光通信系统能量利用效率研究[J].电子学报,2021,49(10):1881-1892.
ZHOU Hong-ping,PAN Zhen-zhen,GUO Kai,et al.Research on the Energy-Utilization Efficiency of OAM Based Optical Communication Systems[J].ACTA ELECTRONICA SINICA,2021,49(10):1881-1892.
周红平,潘珍珍,郭凯等.OAM光通信系统能量利用效率研究[J].电子学报,2021,49(10):1881-1892. DOI: 10.12263/DZXB.20210231.
ZHOU Hong-ping,PAN Zhen-zhen,GUO Kai,et al.Research on the Energy-Utilization Efficiency of OAM Based Optical Communication Systems[J].ACTA ELECTRONICA SINICA,2021,49(10):1881-1892. DOI: 10.12263/DZXB.20210231.
涡旋光是一种携带轨道角动量(Orbital Angular Momentum
OAM)的特殊光束
由于携带不同OAM的涡旋光之间相互正交,并且OAM无限取值的特性,使得其可为光通信系统提供一个新的物理维度,因此吸引了国内外众多学者的关注.随着OAM光通信技术的研究深化,各类OAM通信系统得到了飞速发展,但通信系统中的能量利用效率问题却较少受到关注.本文聚焦近期典型成果中的OAM光束的产生、检测以及整体通信系统的能量利用效率,对之进行概括,并对未来OAM光通信系统的能量利用效率的发展趋势及前景进行分析与展望.
Optical vortex beam is a special beam that carries orbital angular momentum (OAM). Optical vortex beams with different OAMs are orthogonal to each other
and it’s numbers are infinite in theory
which can provide a new communication dimension for the optical communication systems. Therefore
it has attracted great attentions of worldwide scholars. With the in-depth investigations of OAM based optical communication technology
various OAM communication systems have been developed rapidly
but people seldom pay attention to the topic of energy-utilization efficiency in OAM based communication systems. This paper focuses on and summarizes energy-utilization efficiencies of OAM’s generation
detection
and the energy-utilization efficiency of whole communication systems in recent typical achievements. And the development trends and prospects for the energy-utilization efficiency of the future systems have been analyzed and prospected.
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