Birr Tobias, Zywietz Urs, Chhantyal Parva, Chichkov Boris N, Reinhardt Carsten
Opt Express. 2015 Dec 14;23(25):31755-65. doi: 10.1364/OE.23.031755.
In this paper, we present a plasmonic model system for the realization of ultrafast all-optical NOT, AND, OR, and XOR gate operations using linear interference effects in dielectric crossed waveguide structures. The waveguides for the surface plasmon-polaritons are produced by a simple but highly accurate microscopic lithographic process and are optimized for single mode operation at an excitation laser wavelength of 800 nm. The functionality of the presented structures is demonstrated using sub-30 fs laser pulses from a mode locked titanium:sapphire laser. Using leakage radiation microscopy we show ultrafast SPP switching and logic operations of one basic structure consisting of two crossed waveguides with an additional output waveguide along the bisecting line of the input waveguides. The individual gates are realized on a footprint of 10 µm × 20 µm. Experimental investigations are supported by finite-difference time-domain simulations, where good agreement between experimental results and numerical simulations is obtained. To exploit the high precision of the fabrication method and its huge potential for realizing functional complex plasmonic circuitry we experimentally demonstrate a half-adder structure and its operation by combining and cascading several plasmonic waveguide components and logic gate elements on an area of only 10 µm × 28 µm.
在本文中,我们展示了一种等离子体模型系统,该系统利用介质交叉波导结构中的线性干涉效应来实现超快全光非门、与门、或门和异或门操作。表面等离激元极化激元的波导通过一种简单但高度精确的微观光刻工艺制造而成,并针对在800 nm激发激光波长下的单模操作进行了优化。使用锁模钛宝石激光器产生的亚30飞秒激光脉冲来演示所呈现结构的功能。利用泄漏辐射显微镜,我们展示了由两个交叉波导以及沿输入波导平分线的附加输出波导组成的一种基本结构的超快表面等离激元极化激元开关和逻辑操作。各个门在10 µm×20 µm的面积上实现。有限时域差分模拟支持了实验研究,实验结果与数值模拟之间取得了良好的一致性。为了利用制造方法的高精度及其在实现功能复杂的等离子体电路方面的巨大潜力,我们通过在仅10 µm×28 µm的面积上组合和级联几个等离子体波导组件和逻辑门元件,实验演示了一个半加器结构及其操作。