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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Optimal control of the electronic current density: Application to one- and two-dimensional one-electron systems
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Optimal control of the electronic current density: Application to one- and two-dimensional one-electron systems

机译:电子电流密度的最佳控制:一维和二维一电子系统的应用

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Quantum optimal control theory is a powerful tool for engineering quantum systems subject to external fields such as the ones created by intense lasers. The formulation relies on a suitable definition for a target functional, that translates the intended physical objective to a mathematical form. We propose the use of target functionals defined in terms of the one-particle density and its current. A strong motivation for this is the possibility of using time-dependent density-functional theory for the description of the system dynamics. We exemplify this idea by defining an objective functional that on one hand attempts a large overlap with a target density and on the other hand minimizes the current. The latter requirement leads to optimized states with increased stability, which we prove with a few examples of one- and two-dimensional one-electron systems.
机译:量子最优控制理论是一种工程量子系统的强大工具,该量子系统受制于外部场(例如由强激光产生的场)。该表述依赖于对目标功能的适当定义,该定义将预期的物理目标转换为数学形式。我们建议使用根据单粒子密度及其电流定义的目标功能。为此的一个强烈动机是可​​能使用时变密度函数理论来描述系统动力学。我们通过定义一个目标函数来举例说明该想法,该函数一方面尝试与目标密度进行较大的重叠,另一方面使电流最小。后一个要求导致优化状态具有增加的稳定性,我们将通过一些一维和二维一电子系统示例来证明这一点。

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