Department of Physics, Iran University of Science and Technology, Narmak, Tehran, Iran.
J Phys Condens Matter. 2011 Jun 8;23(22):225801. doi: 10.1088/0953-8984/23/22/225801. Epub 2011 May 16.
In this paper we present a theoretical study of an array of circularly arranged quantum dots with a rectangular Kronig-Penney potential in the presence of a perpendicular magnetic field. For a perfect array of dots, an analytical formula for energy dispersion is derived. We also study the effects of disorder on the energy spectrum and persistent tunneling current. The effects of electron-electron interaction are then investigated for both perfect and defected arrays. We show that the period of Aharonov-Bohm oscillations is fractional for interacting electrons confined in a perfect array. In contrast, for a defected array, we find a critical value of electron-electron interaction strength at which a transition occurs from an integer to a fractional period of Aharonov-Bohm oscillations. Moreover, it is shown that the persistent current of weakly interacting electrons confined in a defected array is greater than the current of non- or strongly interacting electrons.
本文研究了在存在垂直磁场的情况下,具有矩形 Kronig-Penney 势的圆形排列量子点阵列。对于完美的点阵列,我们推导出了能量色散的解析公式。我们还研究了无序对能谱和持续隧穿电流的影响。然后,我们研究了完美和有缺陷的阵列中电子-电子相互作用的影响。我们表明,在完美的阵列中,受限电子的 Aharonov-Bohm 振荡的周期是分数的。相比之下,对于有缺陷的阵列,我们发现电子-电子相互作用强度的临界值,在此临界值处,Aharonov-Bohm 振荡的周期从整数变为分数。此外,我们表明,在有缺陷的阵列中受限的弱相互作用电子的持续电流大于非相互作用或强相互作用电子的电流。