百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Novel terahertz meta-devices accelerate 6G communications development

Cathy Choi

 

Professor Chan Chi-hou (second from left, front row), Professor Tsai Din-Ping (right, front row) and researchers at CityU have developed a novel tunable terahertz meta-device.
Professor Chan Chi-hou (second from left, front row), Professor Tsai Din-Ping (right, front row) and researchers at CityU have developed a novel tunable terahertz meta-device.

 

The novel tunable terahertz (THz) meta-device that allows for signal delivery to specific receivers has been developed by City University of Hong Kong (CityU).  

The widespread adoption of such a device, made using advanced 3D printing technology, has implications for saving energy and protecting privacy. It offers many benefits for 6G communications, wireless power transfer and remote sensing. The low-cost fabrication method is also highly promising for industrial-level components in 6G communication.

The CityU team behind the discovery is led by Professor Chan Chi-hou, Acting Provost, Chair Professor in the Department of Electrical Engineering (EE) and the Director of the State Key Laboratory of Terahertz and Millimeter Waves (SKLTMW), Professor Tsai Din-Ping, Chair Professor in EE, Dr Chen Mu-Ku, Assistant Professor in EE, Dr Wu Gengbo, a postdoctoral fellow of the SKLTMW; and Zhang Jingcheng, a PhD student in EE.

During the research, the team demonstrated how rotary metasurface technology can fully control the THz beam’s radiation direction and coverage area based on 6G communication requirements.

The metasurface, which is 30 mm in diameter, comprises over 15,000 artificial minute meta-antennas fabricated through 3D printing. The THz wave can be projected onto an arbitrary spot in a 2D plane or even a 3D space. Only a user located in a specific spot can receive the signal.

The metasurface comprises over 15,000 artificial minute meta-antennas fabricated through 3D printing.
The metasurface comprises over 15,000 artificial minute meta-antennas fabricated through 3D printing.

 

“This arbitrary manipulation of the THz focused beams allows the signal to track the specific receivers without wasting power on nearby receivers and impairing privacy,” said Professor Tsai. “The research offers great benefits for advanced communication systems, including security, flexibility, and signal concentration.”

Extensive and accurate computing was required to design the meta-device for focal spot manipulation in a 2D plane and 3D space to produce the precise location of each spot.

“This was the most challenging part of the discovery,” said Zhang Jingcheng. “We made the varifocal meta-devices by incorporating and rotating several phase profiles, i.e., the cubic, gradient, and focusing phases while performing various projections within two or three metasurfaces.”

As a proof of concept, the team used two kinds of varifocal meta-devices to manipulate the wavefront and focus arbitrarily. The doublet meta-device is designed for steering the Airy beam focusing in a 2D plane, while the triplet meta-device is used for manipulating the Gaussian focal spot in 3D space. The design of the meta-devices was tested and validated in SKLTMW.

The findings have been published in the prestigious journal Science Advances titled “A 6G meta-device for 3D varifocal”.

Professor Tsai and Professor Chan are the corresponding authors. The co-first authors are Zhang Jingcheng, Dr Wu and Dr Chen. The research was supported by the Research Grants Council under the University Grants Committee; the Shenzhen Science and Technology Innovation Commission; and the Department of Science and Technology, Guangdong Province.

 

YOU MAY BE INTERESTED

Contact Information

Communications and Institutional Research Office

Back to top
百家乐网站新全讯网| 葡京百家乐官网玩法| 全讯网信息| 皇冠网小说推荐| 百家乐官网庄闲的冷热| 网络百家乐官网游赌博| 无为县| 真人博彩| 1737棋牌游戏中心| 亚洲顶级赌场手机版| 如何玩百家乐官网的玩法技巧和规则 | 嬴澳门百家乐的公式| 微信百家乐官网群规则大全| LV百家乐官网娱乐城| 百家乐官网五湖四海赌场娱乐网规则| 百家乐官网优博娱乐城| 百家乐官网二路珠无敌稳赢打法| 百家乐官网787| 现金百家乐官网攻略| 百家乐官网平点| 百家乐官网猪仔路| 百家乐游戏规则介绍| 朝阳区| 百家乐官网计划| 虎在什么方位做生意好| 百家乐经验博彩正网| 百家乐网站排行| 百家乐园鼎丰娱乐城| 新加坡百家乐的玩法技巧和规则 | 皇冠百家乐官网皇冠网| 百家乐官网半圆桌| 网络百家乐官网会作假吗| 百家乐视频下载| 狮威百家乐娱乐| 大发在线德州扑克| 百家乐官网2万| 沙龙百家乐官网娱乐城| 百家乐天天赢钱| 大发888为什么卡| 任我赢百家乐软件中国有限公司| 澳门百家乐娱乐网|