Kumar Gagan, Cui Albert, Pandey Shashank, Nahata Ajay
Department of Electrical and Computer Engineering, University of Utah, Salt Lake City, Utah 84112, USA.
Opt Express. 2011 Jan 17;19(2):1072-80. doi: 10.1364/OE.19.001072.
We experimentally demonstrate planar plasmonic THz waveguides using metal films that are periodically perforated with complementary split ring resonators (CSRRs). The waveguide transmission spectra exhibit numerous transmission resonances. While the geometry is commonly used in developing negative index materials, the excitation geometry used here does not allow for conventional metamaterial response. Instead, we show that all of the observed resonances can be determined from the geometrical properties of the CSRR apertures. Surprisingly, the Bragg condition does not appear to limit the frequency extent of the observed resonances. The results suggest that metamaterial-inspired geometries may be useful for developing THz guided-wave devices.
我们通过实验证明了使用周期性穿孔互补开口环谐振器(CSRR)的金属薄膜制作的平面等离子体太赫兹波导。波导传输光谱呈现出众多传输共振。虽然这种几何结构常用于开发负折射率材料,但此处使用的激发几何结构并不允许传统的超材料响应。相反,我们表明所有观察到的共振都可以根据CSRR孔径的几何特性来确定。令人惊讶的是,布拉格条件似乎并未限制观察到的共振的频率范围。结果表明,受超材料启发的几何结构可能有助于开发太赫兹导波器件。