Zhan Hui, Mendis Rajind, Mittleman Daniel M
Department of Electrical and Computer Engineering, MS-366, Rice University, Houston, Texas 77251, USA.
Opt Express. 2010 Apr 26;18(9):9643-50. doi: 10.1364/OE.18.009643.
We experimentally demonstrate complete two-dimensional (2-D) confinement of terahertz (THz) energy in finite-width parallel-plate waveguides, defying conventional wisdom in the century-old field of microwave waveguide technology. We find that the degree of energy confinement increases exponentially with decreasing plate separation. We propose that this 2-D confinement is mediated by the mutual coupling of plasmonic edge modes, analogous to that observed in slot waveguides at optical wavelengths. By adiabatically tapering the width and the separation, we focus THz waves down to a size of 10 microm (approximately lambda/260) by 18 microm ( approximately lambda/145), which corresponds to a mode area of only 2.6 x 10(-5) lambda(2).
我们通过实验证明了太赫兹(THz)能量在有限宽度平行板波导中的完全二维(2-D)限制,这与微波波导技术这一具有百年历史领域中的传统观念相悖。我们发现,能量限制程度随着板间距的减小呈指数增加。我们提出,这种二维限制是由等离子体边缘模式的相互耦合介导的,类似于在光学波长下槽波导中观察到的情况。通过绝热地逐渐减小宽度和间距,我们将太赫兹波聚焦到尺寸为10微米(约为λ/260)乘以18微米(约为λ/145),这对应于仅为2.6×10⁻⁵λ²的模式面积。