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面向深空探测任务的长寿命碳纳米管阴极研究
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作者 陈泽宣 肖东阳 +1 位作者 杜欢欢 宋培义 《深空探测学报(中英文)》 CSCD 北大核心 2024年第2期124-131,共8页
针对深空探测对长寿命碳纳米管场发射阴极的应用需求,从CNTs场发射阴极失效的机制分析出发,提出了长寿命CNTs场发射阴极的性能优化方案。采用图形化设计的CNTs发射簇结构可有效降低CNTs发射体表面的场强屏蔽效应,提升阴极的有效发射面积... 针对深空探测对长寿命碳纳米管场发射阴极的应用需求,从CNTs场发射阴极失效的机制分析出发,提出了长寿命CNTs场发射阴极的性能优化方案。采用图形化设计的CNTs发射簇结构可有效降低CNTs发射体表面的场强屏蔽效应,提升阴极的有效发射面积,避免电流集中于部分CNTs从而引起热量累积。提出一种转移键合工艺,将CNTs发射体与衬底的接触由分子力维持转变为金属层熔融键合,提高阴极的机械稳定性并降低了电/热阻抗。在高真空环境下对样机进行性能测试,优化后的CNTs场发射阴极样机实现了0~1 mA的电流范围、<2μA的电流分辨率与1μA/Hz^(1/2)@0.01~1 Hz的噪声水平,并通过了>550 h的连续发射试验,证明了阴极优化后的长周期稳定性。 展开更多
关键词 碳纳米管 场发射阴极 阵列化设计 边缘效应 转移键合工艺
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OPTIMAL DESIGN OF SMART ANTENNA ARRAY 被引量:1
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作者 GaoFeng LiuQizhong +1 位作者 ShanRunhong ZhangHou 《Journal of Electronics(China)》 2004年第4期342-345,共4页
This letter investigates an efficient design procedure integrating the Genetic Algorithm (GA) with the Finite Difference Time Domain (FDTD) for the fast optimal design of Smart Antenna Arrays (SAA). The FDTD is used t... This letter investigates an efficient design procedure integrating the Genetic Algorithm (GA) with the Finite Difference Time Domain (FDTD) for the fast optimal design of Smart Antenna Arrays (SAA). The FDTD is used to analyze SAA with mutual coupling. Then,on the basis of the Maximal Signal to Noise Ratio (MSNR) criteria, the GA is applied to the optimization of weighting elements and structure of SAA. Finally, the effectiveness of the analysis is evaluated by experimental antenna arrays. 展开更多
关键词 Genetic Algorithm(GA) Finite Difference Time Domain (FDTD) Mutual coupling Weighting element BEAM-FORMING
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Digitalized Mirror Array and Its Application in Large Telescope:Principle and Case Studies
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作者 CHEN Ying-Tian ZHANG Yang +5 位作者 HU Sen Ho Tso-Hsiu Boon Ham Lim Chen Sin Lim Kok Keong Chong Boon Kok Tan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第10期750-760,共11页
In this article, we report the principle and conceptual design of a fundamentally different technology in fabricating high precision aberration free optical devices. The tip-tilt of facet in a mirror array is produced... In this article, we report the principle and conceptual design of a fundamentally different technology in fabricating high precision aberration free optical devices. The tip-tilt of facet in a mirror array is produced by digitally controlled line-tilts of rows and columns. It has not only provided a cost-effective designing methodology in optical physics but also led to a much finer precision of 1 mili arc sec or less. As examples of the application of the proposed digitalised optics, two case studies have been given: a 10 m Schmidt telescope (off-axis) and an 8 m Cassegrain telescope (on-axis). 展开更多
关键词 tip-tilting line-tilting Schmidt telescope aberration correction cassegrain telescope
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