日批在线视频_内射毛片内射国产夫妻_亚洲三级小视频_在线观看亚洲大片短视频_女性向h片资源在线观看_亚洲最大网

Global EditionASIA 中文雙語Fran?ais
China
Home / China / Innovation

Chinese study opens the door to more efficient AI chips

By Li Menghan | chinadaily.com.cn | Updated: 2026-01-23 16:08
Share
Share - WeChat

Chinese scientists have shattered long-held beliefs about certain three-dimensional crystals by discovering and controlling ultratiny "linear" walls inside them, whose thickness and width are around one hundred-thousandth the diameter of a human hair.

The study, led by scientists from the Institute of Physics of the Chinese Academy of Sciences, opens the door to more efficient artificial intelligence chips through storage devices with densities hundreds of times greater than the best currently available. Their results were published in the journal Science on Friday.

To understand this discovery, picture the interior of fluorite ferroelectric crystals — a widely-used material in the microelectronic industry since the 2010s — as a three-dimensional grid like a Rubik's cube. Each small "block" in this grid can store data, controlled by external electric fields. To boost storage density and reduce power consumption, the physical world suggests that the flat, two-dimensional domain walls, which are the boundaries between these "blocks," can also be utilized for data storage.

Having dedicated eight years to studying these types of crystals, the research team found that the segments of their unique layered structure, which were thought to be surface-like charged domain walls, are actually single lines — roughly the width of a single atom on the angstrom scale. In simple terms, what was once thought to be a sheet can, under the right conditions, become a line.

Even more surprisingly, the study showed that these ultrathin lines can remain stable, a vital premise for data storage. Normally, such boundaries would quickly disappear due to electrical forces. However, the team found that tiny defects in the material — missing or extra oxygen atoms — act like glue, holding the charged line in place.

Using advanced electron microscopes, the researchers were able to observe these structures at the atomic scale and even control them by applying localized electric fields. This means that the lines can be created, shifted, or erased on demand, laying the theoretical foundation for data storage.

"Modern data storage devices, from hard drives to solid-state memory, record information using areas measured in tens of nanometers. The newly discovered structures are tens of times smaller. In theory, replacing today's storage units with these atomic-scale features could dramatically increase how much information fits into a tiny space," said Zhong Hai, first author of the study and an associate professor at Ludong University in Shandong province.

It is estimated that a device using such structures could store around 600 times more data than current technologies, potentially packing 20 terabytes of information into an area of one square centimeter — enough for 10,000 high-definition movies to fit into an area the size of a postage stamp.

Zhong also highlighted their significant implications for artificial intelligence hardware, noting that these structures can meet the demand for vast information processing and enable future chips to become denser, faster, and more energy-efficient.

However, Zhong emphasized that this work is fundamental research rather than a commercial product, and practical applications are still years away. He mentioned challenges such as the electrode design to regulate local electrical fields, which are not accessible in everyday settings.

"Nevertheless, this research opens a new path in materials science by redefining how small and flexible information-carrying structures within solids can be," he added.

Top
BACK TO THE TOP
English
Copyright 1994 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
主站蜘蛛池模板: 国产美女久久久久久 | 一区二区三区三区在线 | 日韩av网址在线观看 | 色成人综合 | 亚洲欧美日韩国产 | 日韩精品成人一区 | 日韩精品播放 | 欧美一区二区在线看 | 国产一区二区 | 中国久久久久 | 欧美在线一级片 | 4色av | 午夜久久视频 | 午夜精品福利在线观看 | 日韩一区二区在线看 | 欧美日韩在线免费观看 | 久久综合视频网 | 视频在线观看一区二区 | 亚洲天堂免费 | 欧美特级特黄aaaaaa在线看 | 国产日产亚洲系列最新 | 狠狠综合 | 精品一区二区在线观看 | 天天干夜夜艹 | 色综合综合网 | 成人精品999 | 一本色道久久综合亚洲精品按摩 | 国产一级视频在线 | 草久在线观看 | 色四月婷婷 | 每日av在线 | 亚洲精品在线免费 | 久久国产精品免费观看 | 心动小房东动漫1至6集 在线观看免费 | 香蕉视频在线视频 | 中文字幕久久久 | 免费在线观看小视频 | 国产一级片免费在线观看 | 国产精品毛片va一区二区三区 | 国产999久久久 | 播放毛片|