Smith DR, Padilla WJ, Vier DC, Nemat-Nasser SC, Schultz S
Department of Physics, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92093-0319, USA.
Phys Rev Lett. 2000 May 1;84(18):4184-7. doi: 10.1103/PhysRevLett.84.4184.
We demonstrate a composite medium, based on a periodic array of interspaced conducting nonmagnetic split ring resonators and continuous wires, that exhibits a frequency region in the microwave regime with simultaneously negative values of effective permeability &mgr;(eff)(omega) and permittivity varepsilon(eff)(omega). This structure forms a "left-handed" medium, for which it has been predicted that such phenomena as the Doppler effect, Cherenkov radiation, and even Snell's law are inverted. It is now possible through microwave experiments to test for these effects using this new metamaterial.
我们展示了一种基于间隔排列的导电非磁性裂环谐振器和连续导线的周期性阵列的复合介质,该介质在微波频段呈现出一个频率区域,其中有效磁导率μ(eff)(ω)和介电常数ε(eff)(ω)同时为负值。这种结构形成了一种“左手”介质,据预测,诸如多普勒效应、切伦科夫辐射甚至斯涅尔定律等现象在这种介质中会发生反转。现在通过微波实验使用这种新型超材料来测试这些效应成为可能。