首页> 外文OA文献 >Experimental demonstration of negative refraction and subwavelength imaging by left-handed composite metamaterials
【2h】

Experimental demonstration of negative refraction and subwavelength imaging by left-handed composite metamaterials

机译:左手复合超材料的负折射和亚波长成像的实验演示

摘要

We report a true left-handed (LH) behavior and focusing in a composite metamaterial consisting of periodically arranged split ring resonator (SRR) and wire structures. The magnetic resonance of the SRR structure is demonstrated by comparing the transmission spectra of SRRs with that of closed SRRs. We 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 left-handed transmission band with a peak value of -1.2 dB (-0.3 dB/cm) is obtained. We also report the transmission characteristics of a 2D composite metamaterial (CMM) structure in free space. At the frequencies where left-handed transmission takes place, we experimentally confirmed that the CMM structure has effective negative refractive index. Phase shift between consecutive numbers of layers of CMM is measured and phase velocity is shown to be negative at the relevant frequency range. Refractive index values obtained from the refraction experiments and the phase measurements are in good agreement and the experimental results agree extremely well with the theoretical calculations. By measuring the refracted electromagnetic (EM) waves from a LHM slab, we found an effective refractive index of -1.86. A 2D scanning transmission measurement technique was used to measure the intensity distribution of the electromagnetic (EM) waves that radiate from the point source. The flat lens behavior of a 2D CMM slab was demonstrated for two different point source distances of ds = 0.5λ and λ. The full width at half maximum of the focused beams is 0.36λ and 0.4λ, respectively, which are both below the diffraction limit. © 2006 Materials Research Society.
机译:我们报告了一个真正的左手(LH)行为,并集中在由周期性排列的裂环谐振器(SRR)和金属丝结构组成的复合超材料中。通过比较SRR与封闭SRR的透射光谱,可以证明SRR结构的磁共振。我们通过实验证实,由SRR和导线组成的LH材料的有效等离子体频率低于导线的等离子体频率。获得了明确定义的左手传输带,其峰值为-1.2 dB(-0.3 dB / cm)。我们还报告了二维复合超材料(CMM)结构在自由空间中的传输特性。在左手传输发生的频率上,我们通过实验证实了CMM结构具有有效的负折射率。测量了连续三坐标测量机各层之间的相移,在相关频率范围内相速度显示为负。从折射实验和相测量获得的折射率值非常吻合,并且实验结果与理论计算非常吻合。通过测量LHM平板的折射电磁(EM)波,我们发现有效折射率为-1.86。使用2D扫描透射测量技术来测量从点源辐射的电磁(EM)波的强度分布。在ds =0.5λ和λ的两个不同点光源距离下,证明了2D CMM平板的平面透镜特性。聚焦光束的半峰全宽分别为0.36λ和0.4λ,均低于衍射极限。 ©2006材料研究学会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号