Lee Eui Su, Kang D H, Fernandez-Dominguez A I, Garcia-Vidal F J, Martin-Moreno L, Kim D S, Jeon Tae-In
Division of Electrical and Electronics Engineering, Korea Maritime University, Busan 606-791, Korea.
Opt Express. 2009 May 25;17(11):9212-8. doi: 10.1364/oe.17.009212.
We present experimental and theoretical studies on terahertz surface plasmon (TSP) propagation on slit and rectangular aperture arrays in an aluminum sheet. Terahertz waves are coupled onto the plasmonic structures via a parallel plate waveguide. Long-lasting oscillations are observed in the temporal pulse shape after propagating through the periodic structure, whose Fourier transformation into the frequency domain results in Bragg-resonance spectral features. We show that the interference between the incident wave and the radiation reflected from both the aperture array and the waveguide block is responsible for this Bragg-resonance behavior. The reflection coefficient for a single slit is deduced to be 0.017 +/- 0.002.
我们展示了关于太赫兹表面等离子体(TSP)在铝板上的狭缝和矩形孔径阵列中传播的实验和理论研究。太赫兹波通过平行板波导耦合到等离子体结构上。在通过周期性结构传播后,在时间脉冲形状中观察到持续的振荡,其傅里叶变换到频域会产生布拉格共振光谱特征。我们表明,入射波与从孔径阵列和波导块反射的辐射之间的干涉是这种布拉格共振行为的原因。推导出单个狭缝的反射系数为0.017±0.002。