惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

WordPress大学
WordPress大学
博客园 - 司徒正美
宝玉的分享
宝玉的分享
阮一峰的网络日志
阮一峰的网络日志
The Cloudflare Blog
月光博客
月光博客
博客园 - 【当耐特】
让小产品的独立变现更简单 - ezindie.com
让小产品的独立变现更简单 - ezindie.com
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
博客园 - 三生石上(FineUI控件)
博客园 - 聂微东
小众软件
小众软件
Hugging Face - Blog
Hugging Face - Blog
酷 壳 – CoolShell
酷 壳 – CoolShell
Apple Machine Learning Research
Apple Machine Learning Research
V
V2EX
Jina AI
Jina AI
钛媒体:引领未来商业与生活新知
钛媒体:引领未来商业与生活新知
OSCHINA 社区最新新闻
OSCHINA 社区最新新闻
罗磊的独立博客
雷峰网
雷峰网
博客园 - 叶小钗
量子位
IT之家
IT之家

Latest from TechRadar

Quordle hints and answers for Monday, April 13 (game #1540) NYT Strands hints and answers for Monday, April 13 (game #771) NYT Connections hints and answers for Monday, April 13 (game #1037) Morbid Metal developer explains why he ditched an origami art direction in favor of gritty sci-fi — 'It worked, but it didn't really feel like me' '71% of US households get routers from ISPs': Why new FCC rules could leave millions stuck with outdated,… 'The CPU is the system’s executive layer': Intel joins SambaNova as both face existential threat from… ‘More bang for your buck’: 7 easy ways to boost your MacBook Neo’s performance for free DJI Romo P vs Roborock Saros 10R — which robot vacuum comes out on top when it comes to dodging obstacles? I put… I spent 6 hours with Genshin Impact on the Galaxy S26 Ultra, and I can't believe how far mobile gaming has come What is the release date for The Testaments episode 4 on Hulu and Disney+? I reviewed the LG G6 for 3 weeks, and it's a fantastic OLED TV that's the new best option for brighter rooms Is your bird feeder camera doing more harm than good? 3 tips for using it safely as RSPB issues urgent disease warning Chelsea vs Man City Live Streams: How to watch Premier League 2025/26 from anywhere in the world, team news How to watch Alcaraz vs Sinner for FREE: TV Channels for Monte-Carlo Masters Final Sunderland vs Tottenham Live Streams: How to watch Premier League 2025/26 from anywhere in the world, team news Are these the best-designed workout headphones ever? I used them for a month to find out How to watch Snooker 900 John Virgo online (it's free) – stream O'Sullivan vs Higgins anywhere I've only just discovered the Walk With Frodo app on Garmin's Connect IQ store — and as as a huge LOTR nerd, it's going to make the next 1,800 miles fly by 'Just not sustainable': Why your monthly £25 broadband internet bill could soon hit £45 How to watch Paris-Roubaix 2026: Free Streams & TV Info as Tadej Pogacar chases third Monument How to watch Euphoria season 3 online – stream Zendaya & Sydney Sweeney drama from anywhere today '$15K bill destroyed a solo developer’s startup': How hackers are using leaked Google API keys to… There's a sneaky way to watch UFC 327 really cheap... NYT Connections hints and answers for Sunday, April 12 (game #1036) NYT Strands hints and answers for Sunday, April 12 (game #770) Quordle hints and answers for Sunday, April 12 (game #1539) Amazon's Ring cameras are the perfect solution to secure your home on a budget — shop today's best deals… I've tested every iPhone since the iPhone 12, and Ceramic Shield 2 is the first iPhone glass I fully trust UFC 327 live stream: how to watch Procházka vs Ulberg, start time, preview, full card We're officially getting the DJI Pocket 4 on April 16, but here's how Insta360 could beat it
'A mosaic-like pattern': This new ‘Swiss-Army&rsquo...
Efosa Udinmw · 2026-04-19 · via Latest from TechRadar
A high-contrast SEM (Scanning Electron Microscope) image of the nanostructures (Image credit: AI Generated)
  • Controlled disorder enables multiple optical functions within a single compact device
  • Mosaic metasurfaces reduce space requirements for complex light manipulation tasks
  • Eleven optical functions operate simultaneously on one engineered surface

Researchers at Monash University have flipped a long-held assumption in optics by showing how controlled disorder can make optical devices more powerful.

The team developed a new class of "disordered mosaic metasurfaces" capable of performing multiple optical functions simultaneously within a single device.

Instead of carefully arranging structures in perfect order, the researchers scattered them in a mosaic-like pattern.

Article continues below

How a mosaic design packs more functions into the same space

"Disorder is usually something engineers try to eliminate," said Dr. Haoran Ren. "But we found that if you design it carefully, disorder can actually enhance what these devices can do."

Traditional metasurfaces face a major limitation: each device typically performs just one function.

This new approach uses a disordered "mosaic" layout of tiny light-controlling elements known as meta pixels.

The researchers showed it could drastically reduce the area needed for any one function, freeing up space for additional capabilities.

Sign up to the TechRadar Pro newsletter to get all the top news, opinion, features and guidance your business needs to succeed!

"Think of it like a city," said Dr. Chi Li. "Traditional designs give one function the entire space. What we've done is redesign the 'urban planning' so multiple functions can coexist efficiently."

As a proof of concept, the team built a new type of optical lens that works across a broad range of wavelengths from 1200 to 1400nm.

Its device integrates 11 distinct optical functions into a single surface, enabling it to focus light consistently across different colors without the usual distortion.

The team also demonstrated the ability to capture detailed information about the polarization of light in a single measurement.

Previously, this kind of analysis required multiple measurements or specialized equipment - compact, multifunctional optical devices could transform telecommunications infrastructure, making it faster and more efficient.

Biomedical diagnostics, environmental sensing, and space-based imaging would also benefit from smaller, more capable optical systems.

The platform gives researchers a scalable way to integrate many optical functions into a single compact device.

By showing that disorder can outperform order, the research challenges a foundational assumption across photonics.

"Sometimes the most powerful innovations come from questioning what we think we know," said Dr. Ren.

The study was conducted at the Monash Nanophotonics Laboratory, with additional contributions from the University of Exeter and the University of the Witwatersrand.

Whether this laboratory breakthrough can scale to commercial manufacturing remains an open question.

Still, the conceptual shift from perfect order to engineered disorder opens a new direction for photonics that could eventually deliver faster, better broadband.

Via Nature

Google logo on a black background next to text reading 'Click to follow TechRadar'

Follow TechRadar on Google News and add us as a preferred source to get our expert news, reviews, and opinion in your feeds.

Efosa has been writing about technology for over 7 years, initially driven by curiosity but now fueled by a strong passion for the field. He holds both a Master's and a PhD in sciences, which provided him with a solid foundation in analytical thinking.

You must confirm your public display name before commenting

Please logout and then login again, you will then be prompted to enter your display name.