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DYNAMICAL CONTROL OF QUANTUM TUNNELING DUE TO AC STARK SHIFT IN AN ASYMMETRIC COUPLED QUANTUM DOT

机译:对称耦合量子点中由于AC斯塔克变换而导致的量子隧穿动力学控制

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摘要

Dynamical suppression and enhancement of the quantum tunneling in an asymmetric coupled-quantum-dot structure is predicted to occur when a laser field drives a subband transition in one of the dots. The laser field induces the splitting and shift of the quasiresonant energy levels, i.e., ac Stark (or light) shift. As a result, the tunneling between the energy levels perturbed by the laser field and another level in the neighboring dot is strongly modified as the amplitude of the laser field is increased. Furthermore, it is shown that the amount of the ac Stark shift has an oscillatory behavior for large amplitudes of the laser field, which is not predicted from the conventional rotating-wave approximation for the matter-light interaction. [References: 22]
机译:预计当激光场驱动点之一中的子带跃迁时,会动态抑制和增强非对称耦合量子点结构中的量子隧穿。激光场引起准谐振能级的分裂和移动,即交流斯塔克(或光)移动。结果,随着激光场幅度的增加,被激光场干扰的能级与相邻点中另一个能级之间的隧穿被强烈地改变。此外,示出了对于大的激光场振幅,ac斯塔克频移的量具有振荡行为,这不是从对于物质-光相互作用的常规旋转波近似预测的。 [参考:22]

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