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Theory of time-dependent transport in quantum dot systems

机译:量子点系统中与时间有关的传输理论

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The formulation of the time-dependent tunnel current in quantum dot (QD) systems in the (generalized) transfer hamiltonian formalism is reconsidered, taking into account the nonorthogonality between the subsystems. Exploiting the fact that only the total charge in the system is conserved, in general, gives rise to a new formulation of the transport theory. As a result, it is shown necessary to depart from the orthodox picture, in which the current is treated as a local property of the system. A general formula for the current is derived. By expressing properties of the quantum dot in the Hubbard I approximation with the loop correction, thereby including strong correlations of the QD states, numerical results are given for various time-dependent source-drain voltages.
机译:考虑到子系统之间的非正交性,重新考虑了(广义)转移哈密尔顿形式论中量子点(QD)系统中时间相关隧道电流的公式化。利用仅保留系统中的总电荷这一事实,通常会导致传输理论的新表述。结果,表明有必要偏离正统的图,其中将电流视为系统的局部属性。得出电流的一般公式。通过用循环校正在哈伯德I近似中表达量子点的特性,从而包括QD状态的强相关性,给出了各种随时间变化的源极-漏极电压的数值结果。

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