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Determination of complex absorbing potentials from the electron self-energy

机译:通过电子自能确定复合吸收势

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The electronic conductance of a molecule making contact to electrodes is determined by the coupling of discrete molecular states to the continuum electrode density of states. Interactions between bound states and continua can be modeled exactly by using the (energy-dependent) self-energy or approximately by using a complex potential. We discuss the relation between the two approaches and give a prescription for using the self-energy to construct an energy-independent, nonlocal, complex potential. We apply our scheme to studying single-electron transmission in an atomic chain, obtaining excellent agreement with the exact result. Our approach allows us to treat electron-reservoir couplings independent of single-electron energies, allowing for the definition of a one-body operator suitable for inclusion into correlated electron transport calculations. (c) 2006 American Institute of Physics.
机译:与电极接触的分子的电子电导率是通过离散的分子态与连续的电极态密度的耦合来确定的。束缚态与连续性之间的相互作用可以通过使用(依赖于能量的)自能量来精确建模,或者可以通过使用复杂势来近似建模。我们讨论了这两种方法之间的关系,并给出了使用自能量构造能量独立,非局部,复杂势能的处方。我们将我们的方案应用于研究原子链中的单电子传输,并获得与精确结果的极好的一致性。我们的方法使我们能够独立于单电子能量来处理电子-储层耦合,从而允许定义适合于包含在相关电子传输计算中的单体算子。 (c)2006年美国物理研究所。

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