Taras Shevchenko National University of Kiev, 03022 Kiev, Ukraine.
J Phys Condens Matter. 2014 Jan 8;26(1):015306. doi: 10.1088/0953-8984/26/1/015306. Epub 2013 Nov 29.
The time-dependent transport through a nanoscale device consisting of a single spin-degenerate orbital with on-site Coulomb interaction, coupled to two leads, is investigated. Various gate and bias voltage time dependences are considered. The key and new point lies in the proposed way to avoid the difficulties of the usual heavy computation when dealing with two-time Green's functions within the Keldysh formalism. The time-dependent retarded dot Green's functions are evaluated, in an efficient manner within a non-canonical Hubbard I approximation. Calculations of the time-dependent current are then presented in the wide-band limit for different parameter sets. A comparison between the method and the Hartree-Fock approximation is performed as well. It is shown that the latter cannot account reliably for dynamical aspects of transport phenomena.
研究了由具有局域库仑相互作用的单个自旋简并轨道组成的纳米尺度器件的时变输运。考虑了各种栅极和偏置电压的时间依赖性。关键和新的一点在于提出了一种避免在 Keldysh 形式中处理双时格林函数时通常遇到的大量计算困难的方法。在非正则 Hubbard I 近似下,以有效的方式评估了时变延迟点格林函数。然后在宽带极限下为不同的参数集呈现了时变电流的计算。还对该方法和哈特ree-fock 近似进行了比较。结果表明,后者不能可靠地解释输运现象的动力学方面。