Single-lane 200 Gbit/s photonic wireless transmission of multicarrier 64-QAM signals at 300 GHz over 30 m

被引:1
|
作者
张红旗 [1 ,2 ]
张鹿 [1 ,2 ]
杨作民 [2 ]
杨航 [2 ]
吕治东 [2 ]
庞晓丹 [3 ]
Oskars Ozolins [3 ,4 ]
余显斌 [1 ,2 ]
机构
[1] Zhejiang Lab
[2] College of Information Science and Electronic Engineering,Zhejiang University
[3] Applied Physics Department,KTH Royal Institute of Technology
[4] Networks Unit,RISE Research Institutes of Sweden
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TN92 [无线通信]; O441.4 [电磁波与电磁场];
学科分类号
080402 ; 0809 ; 080904 ; 0810 ; 081001 ;
摘要
Recently, wireless communication capacity has been witnessing unprecedented growth. Benefits from the optoelectronic components with large bandwidth, photonics-assisted terahertz(THz) communication links have been extensively developed to accommodate the upcoming wireless transmission with a high data rate. However, limited by the available signalto-noise ratio and THz component bandwidth, single-lane transmission of beyond 100 Gbit/s data rate using a single pair of THz transceivers is still very challenging. In this study, a multicarrier THz photonic wireless communication link in the 300 GHz band is proposed and experimentally demonstrated. Enabled by subcarrier multiplexing, spectrally efficient modulation format, well-tailored digital signal processing routine, and broadband THz transceivers, a line rate of 72 Gbit/s over a wireless distance of 30 m is successfully demonstrated, resulting in a total net transmission capacity of up to 202.5 Gbit/s.The single-lane transmission of beyond 200 Gbit/s overall data rate with a single pair of transceivers at 300 GHz is considered a significant step toward a viable photonics-assisted solution for the next-generation information and communication technology(ICT) infrastructure.
引用
收藏
页码:143 / 147
页数:5
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