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一种结合密度泛函理论方法的高效非平衡格林函数形式,用于计算具有准一维电极的分子器件的电子输运性质。

An efficient nonequilibrium Green's function formalism combined with density functional theory approach for calculating electron transport properties of molecular devices with quasi-one-dimensional electrodes.

作者信息

Qian Zekan, Li Rui, Hou Shimin, Xue Zengquan, Sanvito Stefano

机构信息

Key Laboratory for the Physics and Chemistry of Nanodevices, Department of Electronics, Peking University, Beijing 100871, China.

出版信息

J Chem Phys. 2007 Nov 21;127(19):194710. doi: 10.1063/1.2804876.

Abstract

An efficient self-consistent approach combining the nonequilibrium Green's function formalism with density functional theory is developed to calculate electron transport properties of molecular devices with quasi-one-dimensional (1D) electrodes. Two problems associated with the low dimensionality of the 1D electrodes, i.e., the nonequilibrium state and the uncertain boundary conditions for the electrostatic potential, are circumvented by introducing the reflectionless boundary conditions at the electrode-contact interfaces and the zero electric field boundary conditions at the electrode-molecule interfaces. Three prototypical systems, respectively, an ideal ballistic conductor, a high resistance tunnel junction, and a molecular device, are investigated to illustrate the accuracy and efficiency of our approach.

摘要

一种将非平衡格林函数形式与密度泛函理论相结合的高效自洽方法被开发出来,用于计算具有准一维(1D)电极的分子器件的电子输运性质。通过在电极 - 接触界面引入无反射边界条件以及在电极 - 分子界面引入零电场边界条件,规避了与一维电极低维性相关的两个问题,即非平衡态和静电势的不确定边界条件。分别研究了三个典型系统,即理想弹道导体、高电阻隧道结和分子器件,以说明我们方法的准确性和效率。

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