外围赌球软件-足球赌球大球_免费百家乐统计软件_全讯网博彩通777 (中国)·官方网站

Two More Successive Publications in "Nature Communication" by NJUPT Professors

文章來源:南京郵電大學英文網發布時間:2019-03-01瀏覽次數:310

Recently, Mao Peng and Wang Zhiqiang, professors of the School of Electronic and Optical Engineering and College of Microelectronics of NJUPT, cooperated with foreign research teams andrespectively published their latest research results in Nature Communications.

Dr. Mao Peng collaborated with Professor Zhang Shuang from the University of Birmingham in the United Kingdom to publish a research paper entitled “Broadband single molecule SERS detection designed by warped optical spaces”. Dr. Mao Peng was the first author of the paper, receiving help and support from Professor Andrea Fratalocchi from King Abdullah University of Science and Technology, Professor Chen Qiang from Nanjing University School of Modern Engineering and Professor Han Min. This achievement is based on the theory of transformation optics based on the equivalent curvature of space curvature and refractive index change. It uses the inverse effect in an ingenious way, and proposes to use the curvature of the substrate to form an equivalent refractive index change, thereby enhancing the optical binding. The groundbreaking use of self-organizing template method and gas-phase nanoparticle beam combination technology has successfully completed the preparation of high-quality samples, and shortened the preparation process of samples from several hours to several minutes, providing reference for real-time high-precision detections. After the article was published, Nature Nanotechnology also published a Research Highlight entitled Curved space for fast analysis, which reported on the work.


Dr. Wang Zhiqiang and Prof. Philippe Grelu from the University of Bourgogne, France, published a research paper entitled “Optical soliton molecular complexes in a passively mode-locked fiber laser” in Nature Communications. Dr. Wang Zhiqiang was the first author and co-responding author. In his research, Dr. Wang Zhiqiang ingeniously used the fiber-mode mode-locked laser to obtain multi-pulse bound states. By virtue of DFT technique, he studied two different soliton interaction kinetics in the double-pulse bound state and the bound state. The concept of Soliton molecular complexes (SMC) was first proposed, revealing the relationship between the strength of soliton interaction and the soliton spacing in SMC. The study also further confirmed the reliability of perceiving internal dynamics of matter molecules by studying the dynamics of optical soliton bound states. That being said, this discovery is of great significance for realizing soliton manipulation and improving the capacity of fiber-optic communication systems. At the same time, it provides a new insight to the study of molecular dynamics in complex nonlinear systems.






金银岛百家乐官网的玩法技巧和规则| 威尼斯人娱乐城易博lm0| 在线百家乐下| 百家乐网上技巧| 百家乐官网官方游戏下载| 澳门百家乐官网路单怎么看| 百家乐实战路| 百家乐赢钱打| 大发888有破解的没| 百家乐官网不倒翁注码| 高科技百家乐官网牌具| 百家乐平六亿财富网| 大发888游戏平台dafa888 gw| 皇冠国际现金网| 百家乐官网乐赌| 全讯网bbin888.com| 百家乐官网分析绿色版| 赌百家乐怎样能赢| 真人21点| 伯爵百家乐娱乐网| 网络百家乐官网怎样出千| 大发888怎么找| 百家乐ho168平台| bet365体育开户| 澳门百家乐官网博彩能做到不输吗| 百家乐怎么赢博彩正网| 网上二八杠| 百家乐实战玩法| 百家乐官网怎么玩能赢钱| 百家乐视频游戏大厅| 新手百家乐官网指点迷津| 七胜百家乐赌场娱乐网规则| 百家乐官网有电脑游戏吗| 老虎机加分器| 百家乐官网和| 开原市| 百家乐园会员注册| k7娱乐城官网| 玩百家乐游戏经验| 鸟巢百家乐官网的玩法技巧和规则 | 正品百家乐官网网站|