期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
On-chip metamaterial-enabled high-order mode-division multiplexing
1
作者 Yu He Xingfeng Li +15 位作者 Yong Zhang Shaohua An Hongwei Wang Zhen Wang Haoshuo Chen Yetian Huang Hanzi Huang Nicolas KFontaine Roland Ryf Yuhan Du Lu Sun xingchen ji Xuhan Guo Yingxiong Song Qianwu Zhang Yikai Su 《Advanced Photonics》 SCIE EI CAS CSCD 2023年第5期106-113,共8页
Mode-division multiplexing(MDM)technology enables high-bandwidth data transmission using orthogonal waveguide modes to construct parallel data streams.However,few demonstrations have been realized for generating and s... Mode-division multiplexing(MDM)technology enables high-bandwidth data transmission using orthogonal waveguide modes to construct parallel data streams.However,few demonstrations have been realized for generating and supporting high-order modes,mainly due to the intrinsic large material groupvelocity dispersion(GVD),which make it challenging to selectively couple different-order spatial modes.We show the feasibility of on-chip GVD engineering by introducing a gradient-index metamaterial structure,which enables a robust and fully scalable MDM process.We demonstrate a record-high-order MDM device that supports TE_(0)–TE_(15)modes simultaneously.40-GBaud 16-ary quadrature amplitude modulation signals encoded on 16 mode channels contribute to a 2.162 Tbit∕s net data rate,which is the highest data rate ever reported for an on-chip single-wavelength transmission.Our method can effectively expand the number of channels provided by MDM technology and promote the emerging research fields with great demand for parallelism,such as high-capacity optical interconnects,high-dimensional quantum communications,and large-scale neural networks. 展开更多
关键词 integrated photonics METAMATERIAL mode-division multiplexing subwavelength grating
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部