波音游戏源码-波音博彩公司评级_百家乐园天将_新全讯网3344111.c(中国)·官方网站


Researchers develop world-leading microwave photonics chip for high-speed signal processing

CityUHK develops world-leading microwave photonics chip for  high-speed signal processing
The team has developed a world-leading MWP chip capable of performing ultrafast analog electronic signal processing and computation using optics. Credit: City University of Hong Kong

A research team led by Professor Wang Cheng from the Department of Electrical Engineering (EE) at City University of Hong Kong (CityUHK) has developed a world-leading microwave photonic chip that is capable of performing ultrafast analog electronic signal processing and computation using optics.

The chip, which is 1,000 times faster and consumes less energy than a traditional electronic processor, has a wide range of applications, covering 5/6G , high-resolution radar systems, , computer vision, and image/video processing.

The team's findings were published in Nature in a paper titled "Integrated Lithium Niobate Microwave Photonic Processing Engine." It is a with The Chinese University of Hong Kong (CUHK).

The rapid expansion of wireless networks, the Internet of Things, and cloud-based services has placed significant demands on underlying radio frequency systems. Microwave photonics (MWP) technology, which uses optical components for microwave signal generation, transmission, and manipulation, offers effective solutions to these challenges. However, integrated MWP systems have struggled to simultaneously achieve ultrahigh-speed analog signal processing with chip-scale integration, , and low power.

"To address these challenges, our team developed a MWP system that combines ultrafast electro-optic (EO) conversion with low-loss, multifunctional signal processing on a single integrated chip, which has not been achieved before," explained Professor Wang.

Such performance is enabled by an integrated MWP processing engine based on a thin-film lithium niobate (LN) platform capable of performing multi-purpose processing and computation tasks of analog signals.

"The chip can perform high-speed analog computation with ultrabroad processing bandwidths of 67 GHz and excellent computation accuracies," said Feng Hanke, Ph.D. student of EE and the first author of the paper.

The team has been dedicated to researching the integrated LN photonic platform for several years. In 2018, colleagues at Harvard University and Nokia Bell labs developed the world's first CMOS (complementary metal-oxide semiconductor)-compatible integrated electro-optic modulators on the LN platform, laying the foundation for the current research breakthrough. LN is referred to as the "silicon of photonics" for its importance to photonics, comparable to silicon in microelectronics.

Their work opens up a new research field, i.e., LN microwave photonics, enabling photonics chips with compact sizes, high signal fidelity, and low latency; it also represents a chip-scale analog electronic processing and computing engine.

More information: Cheng Wang, Integrated lithium niobate microwave photonic processing engine, Nature (2024). DOI: 10.1038/s41586-024-07078-9. www.nature.com/articles/s41586-024-07078-9.

Journal information: Nature

Citation: Researchers develop world-leading microwave photonics chip for high-speed signal processing (2024, February 28) retrieved 23 June 2025 from https://phys.org/news/2024-02-world-microwave-photonics-chip-high.html
This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.

Explore further

Ultra-wideband heterogeneous integrated photodiodes on thin-film lithium niobate platform

183 shares

Feedback to editors

e世博百家乐官网技巧| 茅台百家乐的玩法技巧和规则| 香港六合彩图| 百家乐官网牌九| 大发888网站是多少呢| 百家乐官网专业赌| 在线博彩网| 百家乐赌场规则| 百家乐官网破解方法技巧| 大发888网页版官网| 百家乐评测| 百家乐官网常用公式| 鑫鼎国际| 澳门百家乐规律星期娱乐城博彩| 佳豪娱乐| 百家乐返点| 尊龙百家乐官网娱乐网| 大发888提款之后多久到账| 百家乐官网红桌布| 新营市| 罗盘对应24宿| 娱乐场百家乐官网大都| 六合彩码报| 欧洲百家乐的玩法技巧和规则 | 太阳城官方网站| 百家乐投注外挂| 百家乐官网必胜赌| 大丰收娱乐城官网| 网络百家乐的玩法技巧和规则| 百家乐官网现金网平台排行 | 鸿胜博娱乐| 百合百家乐的玩法技巧和规则| 百家乐官网如何破解| 大发888娱乐城17| 玩百家乐的高手| 线上百家乐官网怎么玩| 在线百家乐官网平台| 大发888提款速度快吗| 百家乐玩法说| 澳门百家乐官网经| 真人百家乐官网国际第一品牌|