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复杂分子网络中的相干定向输运:有效哈密顿方法。

Coherent site-directed transport in complex molecular networks: an effective Hamiltonian approach.

机构信息

Schulich Faculty of Chemistry and The Lise Meitner Center for Computational Quantum Chemistry, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

J Chem Phys. 2010 Mar 21;132(11):114116. doi: 10.1063/1.3355550.

Abstract

Defining the conditions for coherent site-directed transport from an electron donor to a specific acceptor through tunneling barriers in a network of multiple donor/acceptors sites is an important step toward controlling electronic processes in molecular networks. The required analysis is most challenging since the entire network in essentially involved in coherent transport. In this work we introduce an efficient approach for formulating an effective donor/acceptor coupling in terms of the entire network parameters. The approach is based on implementation of Feshbach projection operators to map the entire network Hamiltonian onto a subspace defined by two specific donor and acceptor sites. This nonperturbative approach enables to define regimes of network parameters in which the effective donor-acceptor coupling is optimal. This is demonstrated numerically for simple models of molecular networks.

摘要

定义通过多供体/受体站点网络中的隧道势垒,从电子供体到特定受体进行相干定向输运的条件,是控制分子网络中电子过程的重要步骤。由于整个网络都参与了相干输运,因此所需的分析最为具有挑战性。在这项工作中,我们引入了一种有效的方法,通过整个网络参数来描述有效的供体/受体耦合。该方法基于实现费希巴赫投影算符,将整个网络哈密顿量映射到由两个特定供体和受体站点定义的子空间上。这种非微扰方法能够定义网络参数的范围,在该范围内,有效供体-受体耦合是最佳的。这在分子网络的简单模型中进行了数值验证。

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