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在共面波导上加载集总电容电感制备单负材料 被引量:2
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作者 冯团辉 范丽波 +1 位作者 张春丽 冯志波 《电子元件与材料》 CAS CSCD 北大核心 2010年第1期35-38,共4页
为了探索实现单负材料的方法,研究了在共面波导上加载集总电容和电感元件制备单负材料。首先通过理论分析和微波实验,证实了在共面波导上周期性地加载集总电容和电感元件能够实现两种单负材料(电单负材料和磁单负材料)。然后,针对该制... 为了探索实现单负材料的方法,研究了在共面波导上加载集总电容和电感元件制备单负材料。首先通过理论分析和微波实验,证实了在共面波导上周期性地加载集总电容和电感元件能够实现两种单负材料(电单负材料和磁单负材料)。然后,针对该制备方法,进一步研究了加载电容电感周期性的破坏及加载电感对称性的破坏对单负带隙的影响。结果表明:周期性的破坏对单负带隙基本没有影响;对称性被破坏后,如果电感分布在共面波导中心导带的两侧,仍然能够获得单负材料。 展开更多
关键词 单负材料 电单负材料 磁单负材料 共面波导
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单负材料异质结中电磁波的传播特性研究 被引量:1
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作者 杨飞 冯团辉 《电子元件与材料》 CAS CSCD 2016年第4期54-57,共4页
利用在共面波导传输线上加载电容电感实现了单负材料,对由电单负材料和磁单负材料组成的异质结中电磁波的传播特性进行了研究。结果表明:由于电磁波能够在由两种单负材料组成的异质结中发生隧穿,利用基于共面波导传输线的单负材料异质... 利用在共面波导传输线上加载电容电感实现了单负材料,对由电单负材料和磁单负材料组成的异质结中电磁波的传播特性进行了研究。结果表明:由于电磁波能够在由两种单负材料组成的异质结中发生隧穿,利用基于共面波导传输线的单负材料异质结则可以实现具有亚波长特性的谐振腔,并且加载电容电感周期性的破坏对异质结中电磁波隧穿现象的发生及隧穿频率没有影响。 展开更多
关键词 电单负材料 磁单负材料 异质结 隧穿 亚波长 谐振腔
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支撑介质对Metamaterials结构聚波特性的影响
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作者 刘涛 曹祥玉 +1 位作者 余侃民 文曦 《现代雷达》 CSCD 北大核心 2009年第1期72-75,共4页
Metamaterials材料结构具有汇聚电磁波的能力,作为天线覆层可以显著提高天线的方向性增益。文中利用有限元法,研究了支撑介质的介电常数、厚度及其位置变化对3种Metamaterials结构聚波作用的影响。仿真结果表明,支撑介质的影响因具体结... Metamaterials材料结构具有汇聚电磁波的能力,作为天线覆层可以显著提高天线的方向性增益。文中利用有限元法,研究了支撑介质的介电常数、厚度及其位置变化对3种Metamaterials结构聚波作用的影响。仿真结果表明,支撑介质的影响因具体结构不同而有很大差别:介电常数太大都可能使3种Metamaterials结构失去聚波作用;而在3种情况下,介质厚度与相对位置改变则使Metamaterials结构的聚波作用表现出较大的差异。 展开更多
关键词 复合介质材料 负介电常数媒质 负磁导率媒质 双负媒质 支撑介质 聚波特性 增益
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Negative permittivity derived from inductive characteristic in the percolating Cu/EP metacomposites 被引量:1
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作者 Kai Sun Jiahao Xin +6 位作者 Yaping Li Zhongyang Wang Qing Hou Xiaofeng Li Xinfeng Wu Runhua Fan Kwang Leong Choy 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第11期2463-2469,共7页
Recently,increasing attention has been concentrated on negative permittivity with the development of the emerging metamaterials composed of periodic array structures.However,taking facile preparation into consideratio... Recently,increasing attention has been concentrated on negative permittivity with the development of the emerging metamaterials composed of periodic array structures.However,taking facile preparation into consideration,it is important to achieve negative permittivity behavior based on materials'intrinsic properties rather than their artificially periodic structures.In this paper,we proposed to fabricate the percolating composites with copper dispersed in epoxy(EP)resin by a polymerization method to realize the negative permittivity behavior.When Cu content in the composites reached to 80 wt%,the conductivity abruptly went up by three orders of magnitudes,suggesting a percolation behavior.Below the percolation threshold,the conductivity spectra conform to Jonscher's power law;when the Cu/EP composites reached to percolating state,the conductivity gradually reduced in high frequency region due to the skin effect.It is indicated that the conductive mechanism changed from hopping conduction to electron conduction.In addition,the permittivity did not increase monotonously with the increase of Cu content in the vicinity of percolation threshold,due to the presence of leakage current.Meanwhile,the negative permittivity conforming to Drude model was observed above the percolation threshold.Further investigation revealed that there was a constitutive relationship between the permittivity and the reactance.When conductive fillers are slightly above the percolation threshold,the inductive characteristic derived from conductive percolating network leads to the negative permittivity.Such epsilon-negative materials can potentially be applied in novel electrical devices,such as high-power microwave filters,stacked capacitors,negative capacitance field effect transistors and coil-free resonators.In addition,the design strategy based on percolating composites provides an approach to epsilon-negative materials. 展开更多
关键词 negative permittivity epsilon-negative materials Percolating composites Metacomposites METAmaterialS
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