Tuovinen Riku, van Leeuwen Robert, Perfetto Enrico, Stefanucci Gianluca
QTF Centre of Excellence, Turku Centre for Quantum Physics, Department of Physics and Astronomy, University of Turku, 20014 Turku, Finland.
Department of Physics, Nanoscience Center, University of Jyväskylä, 40014 Jyväskylä, Finland.
J Chem Phys. 2021 Mar 7;154(9):094104. doi: 10.1063/5.0040685.
The generalized Kadanoff-Baym ansatz (GKBA) offers a computationally inexpensive approach to simulate out-of-equilibrium quantum systems within the framework of nonequilibrium Green's functions. For finite systems, the limitation of neglecting initial correlations in the conventional GKBA approach has recently been overcome [Karlsson et al., Phys. Rev. B 98, 115148 (2018)]. However, in the context of quantum transport, the contacted nature of the initial state, i.e., a junction connected to bulk leads, requires a further extension of the GKBA approach. In this work, we lay down a GKBA scheme that includes initial correlations in a partition-free setting. In practice, this means that the equilibration of the initially correlated and contacted molecular junction can be separated from the real-time evolution. The information about the contacted initial state is included in the out-of-equilibrium calculation via explicit evaluation of the memory integral for the embedding self-energy, which can be performed without affecting the computational scaling with the simulation time and system size. We demonstrate the developed method in carbon-based molecular junctions, where we study the role of electron correlations in transient current signatures.
广义卡达诺夫 - 贝姆近似(GKBA)提供了一种计算成本低廉的方法,用于在非平衡格林函数框架内模拟非平衡量子系统。对于有限系统,传统GKBA方法中忽略初始关联的局限性最近已被克服[卡尔松等人,《物理评论B》98,115148(2018)]。然而,在量子输运的背景下,初始态的接触性质,即连接到体电极的结,需要对GKBA方法进行进一步扩展。在这项工作中,我们制定了一种GKBA方案,该方案在无分区设置中包含初始关联。实际上,这意味着初始关联且接触的分子结的平衡可以与实时演化分开。关于接触初始态的信息通过对嵌入自能的记忆积分进行显式评估而包含在非平衡计算中,这可以在不影响计算随模拟时间和系统大小的缩放比例的情况下进行。我们在基于碳的分子结中展示了所开发的方法,在其中我们研究了电子关联在瞬态电流特征中的作用。