bet365官网-bet365平台怎么样_7位百家乐扑克桌_全讯网新2代理 (中国)·官方网站

Research Work of The Research Group led by Professor Cui Tie Jun Selected as One of the Thirty Key Results in Optics, 2016

Publisher:吳嬋Release time:2017-03-23Number of Views:1853



Recently, the research work of an information science view of metamaterials, conducted by a research group which was led by Professor Tie Jun, Cui from the National Key Laboratory of Millimeter Waves of the School of Information Science and Technology, SEU, was selected by Optics and Photonics News -- the membership magazine of the Optic Society -- as one of the thirty most important work in optics, 2016. The article, titled An Information Science View of Metamaterials, reported three high-quality papers of the research group published in Light: Science and Application. Every year, Optics and Photonics News selects thirty of the most notable work in optics and photonic science.

  

In 2014, the research group proposed a new type of artificial electromagnetic coding metamaterials that denotes, analyzes and designs metamaterials in a digital way. Compared to traditional simulated metamaterials on the basis of effective medium parameters, coding metamaterials greatly simplifies the design process and reduces difficulties because their functionality can be controlled by their coding sequence. Thanks to the digital feature, the research group creatively applied the discrete convolution theorem to the far-field pattern. It means that by overlaying another gradient coding sequence to the existing coding pattern, the far-field radiation pattern can be arbitrarily deflected towards a designed direction. This operation of rotating the far-field pattern to a larger angle is similar to the process of of moving the baseband signal to the high-frequency carrier in Fourier transform. At the same time, the group first proposed the use of information entropy to analyze and estimate the size of the information contained in the coding metamaterials, and revealed the proportional relationship between the geometric entropy of the coding pattern and the physical entropy of the far-field pattern, pointing out that this new discovery might help advance the application of coding metamaterials in areas such as multi-beam wireless communications, radar detection and compressive sensing imaging. Finally, the group also proposed a new anisotropic coding surface, which can exhibit independent coding patterns under the x- and y-polarized electromagnetic waves, thus showing different regulatory values for these electromagnetic waves. This technology is expected to enhance the transmission rate of wireless communications and the density of the current storage media and to achieve the visual three-dimensional hologram.

  

Southeast University, as the first unit of completion and corresponding author (the main researchers: Cui Tiejun, Lin Shuo, Gao Lihua, Cheng Qiang, etc.), conducted the research and achieved the research results. It also cooperated with the Center for Terahertz Waves of Tianjin University for experimental tests. Relevant work has been funded by the National Natural Science Foundation of China, the National Major Equipment Funding Project, as well as the Program of Introducing Talents of Discipline to Universities. 


百家乐官网赌机玩法| 百家乐官网偷吗| 百家乐官网体育直播| 津南区| 太原百家乐官网招聘| 百家乐官网平注法口诀技巧| 澳门百家乐赢技巧| tt百家乐的玩法技巧和规则| 大同市| 百家乐注册平台排名| 六合彩教程| 威尼斯人娱乐场老品牌| 太阳城娱乐城怎么样| 免费百家乐官网的玩法技巧和规则| 百家乐真人娱乐场| 网上百家乐娱乐场开户注册| 河南省| 百家乐官网走势图| 百家乐浴盆博彩通排名| 新利国际网上娱乐| 百家乐官网长庄投注| 24山分别指什么| 做生意摆放的招财物件| 吉首市| 百家乐蓝盾有赢钱的吗| 大发888娱乐城下载| 百家乐官网五湖四海赌场娱乐网规则 | 澳门档百家乐官网的玩法技巧和规则 | 澳门百家乐赢钱秘| 澳门威尼斯人| 百家乐官网投注心态| 百家乐官网游戏机破解方法| 手机棋牌游戏下载| 百家乐官网群11889| 大发888老虎机下载免费| 百家乐怎么看单| bet365娱乐| 星期八百家乐官网的玩法技巧和规则| 保时捷娱乐| 杭州太阳城假日酒店| 澳门百家乐官网视频|