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Tunneling of Conduction Band Electrons Driven by a Laser Field in a Double Quantum dot: An Open Systems Approach

机译:双量子点中由激光场驱动的导带电子的隧穿:开放系统方法

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摘要

In this paper, we investigate tunneling of conduction band electrons in a system of an asymmetric double quantum dot which interacts with an environment. First we consider the case in which the system only interacts with the environment and demonstrate that as time goes to infinity they both reach an equilibrium, which is expected, and there is always a maximum and minimum for the populations of the states of the system. Then we investigate the case in which an external resonant optical pulse (a laser) is applied to the system interacting with the environment. However, in this case for different intensities we have different populations of the states in equilibrium and as the intensity of the laser gets stronger, the populations of the states in equilibrium approach the same constant.
机译:在本文中,我们研究了与环境相互作用的不对称双量子点系统中的导带电子隧穿。首先,我们考虑系统仅与环境相互作用的情况,并证明随着时间的推移,它们都达到了预期的平衡,并且系统状态的总总有最大值和最小值。然后,我们研究将外部共振光脉冲(激光)应用于与环境相互作用的系统的情况。但是,在这种情况下,对于不同的强度,我们处于平衡状态下的状态种群不同,并且随着激光强度的增强,处于平衡状态下的状态种群趋于相同的常数。

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