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提出一种单元电尺寸小、工作频带宽、损耗小、结构简单的异向介质设计方案,在1.7—2.7 GHz上所设计的异向介质结构单元电尺寸小于0.035,相对带宽达到45.5%,在整个工作频带上单个结构单元传输损耗小于0.75 dB.对由上述异向介质单元构成的半无限大异向介质平板的电磁波反射、透射特性进行了数值仿真分析,并提取出了电磁波在该异向介质平板中传播时的波数、相速、折射率以及该异向介质平板的有效介电常数和有效磁导率等一系列电磁特性参数,仿真与计算结果表明复波数的实部、相速以及折射率的实部在1.7—2.7 GHz的范围上为负值,并且在相同频带上,有效介电常数和有效磁导率的实部同时为负值,从而有效地验证了“后向行波效应”、“负折射效应”、“双负效应”等异向介质特有的电磁特性,对上述异向介质的存在性给予有力证明.
关键词:
异向介质
宽频带
小单元
介质参数 相似文献
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基于碳纳米管独特的结构特点建立了以其为基础的Pocklington积分方程,并设计了一种全新的碳纳米管太赫兹(THz)波天线.数值仿真和理论计算结果表明,碳纳米管能够产生高频THz电磁辐射,半波长为60μm、半径为2.712nm的单壁碳纳米管偶极天线在-10dB反射系数以下可以实现2.5THz与7.6THz的双频带工作,带宽分别为8.4%与2.7%,由其构成的纳米管天线阵可以获得10.3dB的高增益特性.所得结果有助于在纳观域开展高频THz波辐射源及天线的研究与设计.
关键词:
太赫兹波
碳纳米管
天线
辐射源 相似文献
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An analytical solution is presented for the electromagnetic scattering from an infinite-length metallic carbon nanotube and a carbon nanotube bundle.The scattering field and scattering cross section are predicted using a modal technique based on a Bessel and Hankel function for the electric line source and a quantum conductance function for the carbon nanotube.For the particular case of an isolated armchair (10,10) carbon nanotube,the scattered field predicted from this technique is in excellent agreement with the measured result.Furthermore,the analysis indicates that the scattering pattern of an isolated carbon nanotube differs from that of the carbon nanotube bundle of identical index (m,n) metallic carbon nanotubes. 相似文献
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Characterization of the radiation from single-walled zig-zag carbon nanotubes at terahertz range 下载免费PDF全文
This paper investigates the radiation characteristics of
metal single-walled zig-zag carbon nanotubes as a dipole antenna at
terahertz wave range. The current distribution, input impedance and
mutual impedance are calculated for various geometrical parameters
of vertically-aligned carbon nanotubes. The numerical results
demonstrate the properties of the antenna depending strongly on the
geometrical parameters such as the radius, the lengths of carbon
nantobues, and the spacing between nanotubes. It is found that the
zig-zag carbon nanotubes exhibit very high input impedance and the
mutual impedances for antenna array applications. These unique high
impedance properties are different from the conventional metal thin
wire antenna. The far-field patterns and gain of antenna array are
also calculated. The maximum gain of array of 100-element array is
up to 20.0~dB, which is larger than the gain of 0.598~dB of single
dipole antenna at distance d = 0.5\lambda . 相似文献
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