论文标题

通过绝热和旋转波近似的单个控制的集合量子标程可控性

Ensemble qubit controllability with a single control via adiabatic and rotating wave approximations

论文作者

Robin, Rémi, Augier, Nicolas, Boscain, Ugo, Sigalotti, Mario

论文摘要

在物理文献中,通常看到旋转波近似和“级联”中使用的绝热近似是合理的,以证明使用一个外部场驱动的两级量子系统,特别是当该系统的共振频率驱动的两级量子系统是合理的。两种近似值都需要相对较长的时间,并且基本上基于平均动态系统理论。不幸的是,这两个近似值不能独立完成,因为从某种意义上说,两个时间尺度相互作用。本文的目的是研究如何证明这两个近似值的级联,以及随着忠诚度的最终时间的最终时间,同时保留了绝热策略的鲁棒性。我们的第一个结果,基于高阶平均技术,可以精确地量化种群反转工作的共振频率的不确定性间隔。作为该结果的副产品,我们证明可以通过单个现实评估的控制来控制一个旋转系统的集合,从而提供了著名结果的非平凡延伸,并通过Khaneja和Li的两个控件进行了合奏可控性。

In the physics literature it is common to see the rotating wave approximation andthe adiabatic approximation used "in cascade" to justify the use of chirped pulses for two-level quantum systems driven by one external field, in particular when the resonance frequency of the system is not known precisely. Both approximations need relatively long time and are essentially based on averaging theory of dynamical systems. Unfortunately, the two approximations cannot be done independently since, in a sense, the two time scales interact. The purpose of this paper is to study how the cascade of the two approximations can be justified and how large becomes the final time as the fidelity goes to one, while preserving the robustness of the adiabatic strategy. Our first result, based on high-order averaging techniques, gives a precise quantification of the uncertainty interval of the resonance frequency for which the population inversion works. As a byproduct of this result, we prove that it is possible to control an ensemble of spin systems by a single real-valued control, providing a non-trivial extension of a celebrated result of ensemble controllability with two controls by Khaneja and Li.

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