ARRAYS

作品数:483被引量:817H指数:11
导出分析报告
相关领域:电子电信更多>>
相关作者:凌云赵翠兰李勇平孟国杰申旭辉更多>>
相关机构:东南大学北京大学清华大学中国科学院更多>>
相关期刊:更多>>
相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金国家教育部博士点基金更多>>
-

检索结果分析

结果分析中...
选择条件:
  • 基金=国家重点基础研究发展计划(973Program)x
条 记 录,以下是1-5
视图:
排序:
Fabrication of In P-based monolithically integrated laser transmitters
《Science China(Information Sciences)》2018年第8期60-78,共19页Song LIANG Dan LU Lingjuan ZHAO Hongliang ZHU Baojun WANG Daibing ZHOU Wei WANG 
supported by National Natural Science Foundation of China(NSFC)(Grant Nos.61635010,61474112,61574137,61320106013,61335009,61321063,61674134,61274071);National Key Research and Development Program of China(Grant No.2016YFB0402301);National High Technology Research and Development Program of China(863 Program)(Grant No.2013AA014502);National Basic Research Program of China(973 Program)(Grant No.2014CB340102)
In P-based photonic integrated circuits(PICs) have aroused great interest in recent years to meet the needs of future high-capacity and high-performance optical systems. With the advantages of small size,low power con...
关键词:photonic integration EMLs multi-wavelength DFB laser arrays widely tunable DBR lasers integrated AFL few-mode transmitters 
Fabrication of Superhydrophobic Micro Post Array on Aluminum Substrates Using Mask Electrochemical Machining被引量:4
《Chinese Journal of Mechanical Engineering》2018年第4期110-116,共7页Jing Sun Wei Cheng Jin-Long Song Yao Lu Yan-Kui Sun Liu Huang Xin Liu Zhu-Ji Jin Claire J-Carmalt Ivan P-Parkin 
Supported by National Natural Science Foundation of China(Grant No.51605078);Science Fund for Creative Research Groups of NSFC(51621064);National Basic Research Program of China(973 Program,Grant No.2015CB057304)
Surfaces with controllable micro structures are significant in fundamental development of superhydrophobicity. However,preparation of superhydrophobic surfaces with array structures on metal substrates is not effectiv...
关键词:SUPERHYDROPHOBICITY Aluminum substrates Mask electrochemical machining Micro post arrays 
Electrochemical micromachining of microgroove arrays on phosphor bronze surface for improving the tribological performance被引量:5
《Chinese Journal of Aeronautics》2018年第7期1609-1618,共10页Xuan ZHOU Ningsong QU Zhibao HOU Gai ZHAO 
supported by the National Basic Research Program of China (973 Program,No.2015CB057502);the Fundamental Research Funds for the Central Universities (No.NZ2016106)
A high friction coefficient and a low wear rate of contacted surfaces are essential elements to friction pairs between the stator and the rotor in ultrasonic motors. It has been shown that surface textures have a sign...
关键词:Friction coefficient MICROGROOVES Through-mask electrochemical micromachining Ultrasonic motors WEAR 
High refractive index sensitivity sensing in gold nanoslit arrays
《Chinese Physics B》2014年第8期55-59,共5页袁浚 阚强 耿照新 解意洋 王春霞 陈弘达 
Project supported by the National Key Basic Research Program of China(973 Program)(Grant Nos.2011CB933102,2010CB934104,and 2011CB933203);the National Natural Science Foundation of China(Grant Nos.61036009 and 61378058);the Science Innovation Foundation of the Cooperation Project between Jilin Province and Chinese Academy of Sciences(Grant No.2012CJT0037)
The extraordinary optical transmission (EOT) phenomenon of nano-periodic aperture array in metallic film has been widely investigated and used in biosensors. The surface plasmon resonance and cavity mode in some per...
关键词:SENSORS extraordinary optical transmission nanoslit array cavity mode 
LSPR spectral properties of Au nano-ring arrays and single Au nanoparticles被引量:1
《中国光学与应用光学》2010年第1期75-78,共4页MA Jun-xian TAN Rui-hu FANG Yu ZHENG Da-wei LUO Xian-gang 
supported by the Major State Basic Research and Development Program(973 Program) (2006CB302900) ; National Nature Science Foundation of China(60772026).
In this paper, we simulate Localized Surface Plasmon Resonance(LSPR) absorption of periodic Au nano-ring arrays and single Au nanoparticles using the Finite Difference Time Domain(FDTD) method. We choose input plane w...
关键词:等离子体 平面波 周期性结构 共振 
检索报告 对象比较 聚类工具 使用帮助 返回顶部