男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
China
Home / China / Innovation

Scientists set milestone in quantum tech

By Zhang Zhihao | China Daily | Updated: 2020-06-16 09:20
Share
Share - WeChat
Quantum scientist Pan Jianwei works in the quantum lab of the Univerisity of Science and Technology of China on April 20, 2017. [Photo/Xinhua]

Chinese scientists have achieved the world's first quantum key distribution over 1,120 kilometers without relying on any intermediate security relays, according to a study published in the journal Nature on Monday.

Experts said this represents a major milestone in building a practical global-scale, ultra-secure quantum internet, but the actual technology might still be years away.

Quantum key distribution, known as QKD, is a technique used to achieve secure communication that uses cryptographic protocols based on the laws of quantum mechanics. Today's QKD is mostly conducted through optical fibers on the ground, with few exceptions using quantum satellites.

These protocols can generate secret security keys that enable more secured data transfer between devices by allowing authorities to spot eavesdroppers trying to intercept communications.

"QKD is theoretically highly secured. But in reality, imperfections in equipment such as photon sources and detectors may lead to security risks," said Pan Jianwei, noted quantum physicist and the lead scientist behind the study.

Moreover, QKD via optical fibers are susceptible to interference and cannot be sent over ultralong distance without relying on intermediate repeaters to boost the signals, he said.

To tackle these issues, Pan and his team tested a new QKD protocol method that uses satellites instead of ground-based relays.

They achieved this by using China's quantum science satellite Micius to send a secret key at the rate of 0.12 bits per second between the ground stations at Delingha and Urumqi, separated by around 1,120 kilometers.

Peer-reviewed comments called the study a "groundbreaking experiment", and a "significant step toward establishing a global network for QKD, and more generally, a quantum internet for quantum communication."

Gilles Brassard, one of the founders of quantum cryptography, said if the technology for secured, long distance quantum communication finally arrives, "this would achieve the Holy Grail that all cryptographers have been dreaming of for thousands of years."

Wang Jianyu, a researcher from the Shanghai Institute of Technological Physics of the Chinese Academy of Sciences, said now that the study has proved that the new technique is technically feasible, the next step should be increasing its communication capacity to make it useful.

"It is still too soon to say when the technology will reach the mass market," he said. "But in the next three to five years, we might see another leap in this method's efficiency, and that might be enough to support a nation's financial and security communication needs."

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: 友谊县| 秭归县| 桓台县| 鱼台县| 鹤壁市| 化隆| 广州市| 怀安县| 个旧市| 临泉县| 驻马店市| 深泽县| 湟源县| 泽库县| 荆门市| 定远县| 台东县| 五峰| 安吉县| 工布江达县| 嫩江县| 晋州市| 武强县| 潼南县| 循化| 堆龙德庆县| 河南省| 巨野县| 镇原县| 印江| 汝南县| 漳浦县| 凌源市| 肃北| 霍山县| 桐城市| 共和县| 绿春县| 湖口县| 黄龙县| 宜州市| 汾阳市| 黔南| 福海县| 苏尼特左旗| 安达市| 通河县| 青海省| 南郑县| 如东县| 福贡县| 阳山县| 贵溪市| 时尚| 青冈县| 齐河县| 高青县| 永兴县| 吉林省| 科尔| 客服| 镶黄旗| 白河县| 滦南县| 桐柏县| 砀山县| 酒泉市| 乐清市| 纳雍县| 藁城市| 丹棱县| 托克托县| 名山县| 铜川市| 石河子市| 章丘市| 禹州市| 阳新县| 松桃| 理塘县| 五台县| 普定县|