Kumarasinghe Chathurangi S, Premaratne Malin, Gunapala Sarath D, Agrawal Govind P
Advanced Computing and Simulation Laboratory (AχL), Department of Electrical and Computer Systems Engineering, Monash University, Clayton, Victoria 3800, Australia.
Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 91109, USA.
Sci Rep. 2016 Feb 18;6:21470. doi: 10.1038/srep21470.
We propose a nano-scale current-direction-switching device(CDSD) that operates based on the novel phenomenon of geometrical asymmetry between two hot-electron generating plasmonic nanostructures. The proposed device is easy to fabricate and economical to develop compared to most other existing designs. It also has the ability to function without external wiring in nano or molecular circuitry since it is powered and controlled optically. We consider a such CDSD made of two dissimilar nanorods separated by a thin but finite potential barrier and theoretically derive the frequency-dependent electron/current flow rate. Our analysis takes in to account the quantum dynamics of electrons inside the nanorods under a periodic optical perturbation that are confined by nanorod boundaries, modelled as finite cylindrical potential wells. The influence of design parameters, such as geometric difference between the two nanorods, their volumes and the barrier width on quality parameters such as frequency-sensitivity of the current flow direction, magnitude of the current flow, positive to negative current ratio, and the energy conversion efficiency is discussed by considering a device made of Ag/TiO2/Ag. Theoretical insight and design guidelines presented here are useful for customizing our proposed CDSD for applications such as self-powered logic gates, power supplies, and sensors.
我们提出了一种纳米级电流方向切换器件(CDSD),它基于两种热电子产生等离子体纳米结构之间几何不对称的新现象运行。与大多数其他现有设计相比,该器件易于制造且开发成本低。由于它由光学供电和控制,因此在纳米或分子电路中无需外部布线就能运行。我们考虑一种由两个不同的纳米棒组成、中间隔着一个薄但有限势垒的CDSD,并从理论上推导了频率相关的电子/电流流速。我们的分析考虑了在周期性光学扰动下纳米棒内部电子的量子动力学,这些电子被纳米棒边界限制,纳米棒边界被建模为有限圆柱势阱。通过考虑一个由Ag/TiO2/Ag制成的器件,讨论了设计参数(如两个纳米棒之间的几何差异、它们的体积和势垒宽度)对电流方向的频率敏感性、电流大小、正负电流比以及能量转换效率等品质参数的影响。这里给出的理论见解和设计指南对于将我们提出的CDSD定制用于自供电逻辑门、电源和传感器等应用很有用。