首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 120 毫秒
1.
戴雨涵  陈小浪  赵强  张继华  陈宏伟  杨传仁 《物理学报》2013,62(6):64101-064101
开口谐振环(SRRs) 结构可以激励磁谐振, 实现负的磁导率. 提出在SRRs两环间隙内引入相对交错的金属短线, 并研究了金属短线对谐振频率的影响. 结果表明: 随着金属短线数目的增多, 谐振频率显著降低, 同时金属短线的结构参数如长度、宽度及间距也会对谐振频率产生影响. 最后验证了金属短线的引入对减小器件尺寸有明显作用, 且不因介质基底的存在而受到影响. 新型磁谐振单元可为今后超材料的设计及实际应用提供新的参考. 关键词: 左手材料 开口谐振环 太赫兹 小型化  相似文献   

2.
艾芬  白洋  徐芳  乔利杰  周济 《物理学报》2008,57(7):4189-4194
利用铁氧体的外场调制特性,提出采用铁氧体作为金属环线结构的介质基板,实现频率可调左手材料. 首先采用时域差分有限元方法数值模拟了基板材料参数变化的条件下,开口谐振环的频率可调性规律. 随基板材料的介电常数或磁导率升高,与开口谐振环负磁导率对应的透射谷频率将显著降低. 实验制备了一系列超高频软磁六角铁氧体,利用外加磁场有效调制了其磁导率. 并通过实验表明,通过调控外加磁场可以有效地调控开口谐振环负磁导率对应的透射谷频率. 关键词: 左手材料 开口谐振环 铁氧体 可调  相似文献   

3.
通过实验及仿真研究了三角谐振环组合新型六边形谐振环金属线复合周期结构左手材料.仿真研究了以金属铜三角开口谐振环(SRRs)为基本单元的周期结构负磁导率材料,与闭口环(CSRRs)结果对比发现三角开口谐振环能产生很好的谐振效果即能产生负磁导率,并且多层单元仿真发现多个谐振环耦合能提高谐振频率并加宽谐振频段;设计、制作并实验和仿真研究了三角开口环为基本单元的六边形谐振环金属线复合周期结构左手材料,仿真结果在98GHz附近出现良好负折射效应,实验验证在93—108 GHz出现良好负折射效应,与仿真结果具有良好的一致性.该研究对新型周期结构左手材料的研究、设计和研制具有重要的科学意义和应用前景. 关键词: 左手材料 三角环组成的六边形谐振环 负折射  相似文献   

4.
一维负磁导率材料中的缺陷效应   总被引:15,自引:0,他引:15       下载免费PDF全文
理论和实验已经表明,金属开口谐振环(split ring resonators,简称SRR)可以实现材料的有效磁导率μeff在某一频率范围内为负.采用波导法实验研究了不同几何尺寸的六边形SRR在X波段微波作用下的近邻相互作用.实验发现,相同尺寸的六边形SRR周期性排列而成的一维负磁导率材料存在一个谐振频率;当缺陷谐振环引入一维负磁导率材料时,主谐振频率和缺陷环谐振频率同时发生移动;主谐振频率和缺陷环谐振频率的移动量随缺陷与双环谐振频率之差的增加而减小,当缺陷环谐振频率与双环谐振频率接近时,环间的相互作用增强,频率的移动量增大. 关键词: 负磁导率 缺陷效应 开口谐振环  相似文献   

5.
左手材料的反射特性与负折射率行为   总被引:3,自引:0,他引:3       下载免费PDF全文
郑晴  赵晓鹏  付全红  赵乾  康雷  李明明 《物理学报》2005,54(12):5683-5687
利用平板波导法研究了不同入射角度下周期排列开口谐振环负磁导率材料、周期排列金属杆负介电常数材料以及左手材料微波反射特性,并利用劈尖法研究了左手材料的负折射特性.实验结果表明:负磁导率材料反射率曲线形成反射峰,其对应的反射峰频率与材料的谐振频率一致;负介电常数材料反射率接近0dB;左手材料出现单个反射较小的反射峰,其峰值反射率随入射角度的增大而变大,即反射能力增强,且反射峰与透射峰有相对频移.劈尖法测量还表明,左手材料在9800MHz频率附近出现负折射现象,其折射率n为-0.796. 关键词: 左手材料 反射 负折射率  相似文献   

6.
通过实验及仿真研究了基于矩形谐振环的新型三角形和三矩形开口谐振环金属线复合周期结构左手材料.仿真研究了以金属铜三角谐振环和三矩形谐振环(SRRs)为基本单元的周期结构负磁导率材料,结果显示两种谐振环均能产生很好的谐振效果,即能产生负磁导率;设计、制作并实验和仿真研究了三角谐振环和三矩形谐振环金属线复合周期结构左手材料,实验结果分别在9.5—13.3GHz和9.8—12.5GHz出现良好的负折射效应,与仿真结果具有较好的一致性.该研究对新型周期结构左手材料的研究、设计和研制具有重要的科学意义和应用前景. 关键词: 左手材料 负折射 三角形谐振环 三矩形谐振环  相似文献   

7.
刘亚红  罗春荣  赵晓鹏 《物理学报》2007,56(10):5883-5889
基于用一种结构同时实现材料介电常数和磁导率为负的思想,提出了H型结构单元左手材料模型.采用矩形波导法测试表明,H型结构单元在微波频率范围出现左手透射峰,并且可以由参数t对左手特性区域进行调控.同时利用相位法、棱镜折射法和散射参量法从实验和理论证明了在左手透射峰区域材料的折射率为负值,介电常数和磁导率亦同时为负.相对由金属开口谐振环与金属线两种结构组合实现的左手材料,H型结构集磁谐振与电谐振于一体,结构简单、制备方便,对微波器件左手材料表现出更多的优越性.  相似文献   

8.
非对称开口六边形谐振单环的微波透射特性   总被引:3,自引:0,他引:3       下载免费PDF全文
姚远  赵晓鹏  赵晶  周欣 《物理学报》2006,55(12):6435-6440
受自然界树型结构的启发,设计了分叉树型微结构单元,用电路板刻蚀技术制作了非对称开口六边形谐振单环及其组合结构.采用计算机模拟和实验研究了单个和多个谐振环在微波段(7—12 GHz)的电磁响应行为.研究结果表明:该结构具有负磁导率特性,开口谐振环几何尺寸影响环的磁谐振频率;两环环间距较小时出现二次谐振;带高级分支的辐射状环列相对于不带分支环列透射峰向低频移动.实验和模拟结果相符. 关键词: 负磁导率 开口谐振环 透射率  相似文献   

9.
陈春晖  屈绍波  王甲富  马华  徐卓  何花 《物理学报》2011,60(8):84104-084104
在已有的磁超材料和左手材料结构中,负等效磁导率主要通过开口谐振环、平行短金属线对或者它们的变形结构来实现. 这些结构要求入射电磁波的电场方向平行于基板. 针对这一特点,利用将开口和闭口的谐振环相连通的思想,设计出了入射电磁波的电场方向垂直于基板型的三维磁超材料,并予以实验验证. 该对称结构中金属线线宽的变化对磁谐振频率影响很小,有利于实际的加工和应用. 同时,该结构对于设计三维以及具有极化无关、均匀各向同性等特点的磁超材料和左手材料具有参考价值. 关键词: 磁超材料 谐振环 电场方向  相似文献   

10.
基于双环开口谐振环对的平面周期结构左手超材料   总被引:1,自引:0,他引:1       下载免费PDF全文
通过理论分析和实验仿真,研究了用双环开口谐振环对(double split-ring resonator pairs,DSRRP)实现平面左手超材料的原理,用等效电路理论解释并描述了其负介电常数和负磁导率的产生机理,并对DSRRP在3维左手超材料设计的应用进行了探索性研究.结果表明,DSRRP可以实现小尺寸的平面左手超材料,此外,DSRRP还可以作为用以实现3维左手超材料负磁导率的3维各向异性磁超材料. 关键词: 双环开口谐振环对 平面左手超材料 3维磁超材料  相似文献   

11.
We report the true left-handed transmission of a composite metamaterial (CMM) consisting of periodically stacked split-ring resonator (SRR) and wire elements. The negative permeability (μ < 0) gap is demonstrated explicitly by comparing SRR and closed-ring resonator structures. We confirm experimentally that the plasma cut-off frequency of the CMM is determined by the combined dielectric response of SRR and wire elements, and it is much lower than that of the wire-only medium. This is crucial to identify the left-handed transmission bands of the CMM. We further investigate the effect of intralayer and interlayer disorder on the transmission spectrum of CMM arising from misaligned fabrication and stacking of the SRR layers. We found that the intralayer disorder affects the μ < 0 gap of SRRs and the left-handed transmission band of CMM significantly, whereas the SRR transmission is rather immune to interlayer disorder.  相似文献   

12.
We report true left-handed (LH) behavior in a composite metamaterial consisting of a periodically arranged split ring resonator (SRR) and wire structures. We demonstrate the magnetic resonance of the SRR structure by comparing the transmission spectra of SRRs with those of closed SRRs. We have confirmed experimentally that the effective plasma frequency of the LH material composed of SRRs and wires is lower than the plasma frequency of the wires. A well-defined LH transmission band with a peak value of -1.2 dB (-0.3 dB/cm) was obtained. The experimental results agree extremely well with the theoretical calculations.  相似文献   

13.
In this study we provide experimental methods to identify the magnetic resonance of split ring resonantors (SRR) at the microwave frequency regime. Transmission measurements were performed on both single SRR unit cell and periodic arrays of SRRs. The magnetic response of the SRR structure was demonstrated by comparing the transmission spectra of SRRs with closed ring resonators (CRR). Effects of the changes in the effective dielectric constant of the SRR medium on the band-gaps of SRR are investigated experimentally. SRRs not only exhibit a magnetic resonance band gap but also a band gap due to the electric resonance. Finally, we present the effect of electric coupling to the magnetic resonance of bianisotropic SRRs by utilizing SRRs with different orientations, and incident electromagnetic wave polarizations.  相似文献   

14.
孙明昭  张淳民  宋晓平 《物理学报》2010,59(8):5444-5449
通过实验及仿真研究了基于C环的新型八边形开口谐振环金属线复合周期结构左手材料.以金属铜八边形谐振环(SRRs)为基本单元的周期结构负磁导率材料,与闭口环(CSRRs)结果对比发现八边形谐振环能产生很好的谐振效果即能产生负磁导率;复合结构仿真结果显示,八边形谐振环金属线复合结构实现负折射具有可行性.设计、制作并实验和仿真研究了两种尺寸的八边形谐振环金属线复合周期结构左手材料,实验结果显示,分别在9.8—15GHz和9.5—15GHz出现良好负折射效应,表明小尺寸材料负折射频段较宽但整体能量透过率较小.通过与尺寸相近的传统C环样品实验对比发现八边形样品损耗较大,但其负折射区域能量分布比例较大,具有一定的优越性.该研究对新型周期结构左手材料的研究、设计和研制具有重要的科学意义,在国防、通信等领域也具有广阔的应用前景.  相似文献   

15.
In this paper, we showed that split-ring resonator (SRR) pairs can be used as broadband planar left-handed metamaterials (LHMs). Simulations were carried out for one layer of infinite LHM slab using SRR pairs. The results showed that by carefully adjusting dimensions of the SRR pairs, magnetic and electric resonances can be coexistent at some frequency ranges and in the frequency range where there are both negative magnetic and electric responses, there is a broad LH band. Equivalent circuits for the magnetic and electric resonance were offered to give a qualitative and quantitative explanation of the LH behaviors of LHMs using SRR pairs.  相似文献   

16.
We present theoretical and experimental results for a new design of highly symmetric, multigap split-ring resonators (SRRs), as well as for left-handed materials of a broad and high transmittance left-handed band, achieved by combining those symmetric SRRs with continuous wires. Studying in detail, both theoretically and experimentally, our proposed symmetric SRRs, we proved that they avoid the electric field excitation of the magnetic SRR resonance; thus they are appropriate for the creation of two-dimensional and three-dimensional left-handed materials. Finally, we propose critical design rules for the development of low-loss and broad-band left-handed materials.  相似文献   

17.
A planar metamaterial structure consisting of two layers of split-ring resonator (SRR) arrays is demonstrated to form the image of a point source with subwavelength resolution. The source frequency is swept through the resonance gap of the metamaterial layers and the lateral field intensity distribution is recorded on the transmission side of the metamaterial. When the source is tuned to the resonance frequency of SRRs, the metamaterial acts as a high permeability medium and a distinct image with subwavelength resolution in the lateral direction is obtained. Increasing the distance between the individual SRR layers reduces the interlayer coupling, and the intensity and spatial resolution of the image decrease rapidly.  相似文献   

18.
Azad AK  Dai J  Zhang W 《Optics letters》2006,31(5):634-636
We present a terahertz time-domain spectroscopy study of the transmission properties of planar composite media made from subwavelength double split-ring resonators (SRRs). The measured amplitude transmission spectra reveal a resonance near 0.5 THz, the central frequency of most ultrafast terahertz systems, for one SRR orientation in normal-incidence geometry. This resonance is attributed to the effect of electric excitation of magnetic resonance of the SRR arrays. In addition, the influences of background substrate, lattice constant, and the shapes of the SRRs on the terahertz resonance are experimentally investigated and agree well with the results of recent numerical studies.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号