返回
Multi-dimensional data transmission using inverse-designed silicon photonics and microcombs
DOI:10.1038/s41467-022-35446-4.png)
摘要
En 中文
The use of optical interconnects has burgeoned as a promising technology that can address the limits of data transfer for future high-performance silicon chips. Recent pushes to enhance optical communication have focused on developing wavelength-division multiplexing technology, and new dimensions of data transfer will be paramount to fulfill the ever-growing need for speed. Here we demonstrate an integrated multi-dimensional communication scheme that combines wavelength- and mode- multiplexing on a silicon photonic circuit. Using foundry-compatible photonic inverse design and spectrally flattened microcombs, we demonstrate a 1.12-Tb/s natively error-free data transmission throughout a silicon nanophotonic waveguide. Furthermore, we implement inverse-designed surface-normal couplers to enable multimode optical transmission between separate silicon chips throughout a multimode-matched fibre. All the inverse-designed devices comply with the process design rules for standard silicon photonic foundries. Our approach is inherently scalable to a multiplicative enhancement over the state of the art silicon photonic transmitters.
Keyword:
MODE
COMPACT
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
IF:
15.7
论文数:
9.4W
被引数:
91.2W
机构
引用论文
Single-source chip-based frequency comb enabling extreme parallel data transmission
NATURE PHOTONICS
IF32.9
Inverse-designed non-reciprocal pulse router for chip-based LiDAR用于基于芯片的激光雷达的非互易脉冲路由器的逆设计
NATURE PHOTONICS
IF32.9
Topology optimized mode multiplexing in silicon-on-insulator photonic wire waveguides绝缘体上硅光子线波导中的拓扑优化模式复用
OPTICS EXPRESS
IF3.3
Demonstration of free space coherent optical communication using integrated silicon photonic orbital angular momentum devices
OPTICS EXPRESS
IF3.3
Demonstration of terabit coherent on-chip optical interconnects employing mode-division multiplexing
OPTICS LETTERS
IF3.3



