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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Optimal control theory for quantum electrodynamics: an initial state problem
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Optimal control theory for quantum electrodynamics: an initial state problem

机译:量子电动力学的最优控制理论:初始状态问题

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In conventional quantum optimal control theory, the parameters that determine an external field are optimised to maximise some predefined function of the trajectory, or of the final state, of a matter system. The situation changes in the case of quantum electrodynamics, where the degrees of freedom of the radiation field are now part of the system. In consequence, instead of optimising an external field, the optimal control question turns into a optimisation problem for the many-body initial state of the combined matter-photon system. In the present work, we develop such an optimal control theory for quantum electrodynamics. We derive the equation that provides the gradient of the target function, which is often the occupation of some given state or subspace, with respect to the control variables that define the initial state. We choose the well-known Dicke model to study the possibilities of this technique. In the weak coupling regime, we find that Dicke states are the optimal matter states to reach Fock number states of the cavity mode with large fidelity, and vice versa, that Fock number states of the photon modes are the optimal states to reach the Dicke states. This picture does not prevail in the strong coupling regime. We have also considered the extended case with more than one mode. In this case, we find that increasing the number of two-level systems allows reaching a larger occupation of entangled photon targets.
机译:在传统的量子最优控制理论中,确定外部场的参数被优化,以最大化物质系统的轨迹的一些预定义函数或最终状态。量子电动力学的情况发生变化,其中辐射场的自由度现在是系统的一部分。结果,最佳控制问题而不是优化外部领域,而是用于组合物 - 光子系统的许多身体初始状态的优化问题。在目前的工作中,我们为量子电动力学开发了这种最佳控制理论。我们得出了提供目标函数梯度的等式,这通常是关于定义初始状态的控制变量的一些给定状态或子空间的占用。我们选择众所周知的Dicke模型来研究这种技术的可能性。在弱耦合方案中,我们发现Dicke状态是最佳的物质状态,以实现具有大保真度的腔模式的凹槽数状态,反之亦然,光子模式的Fock数状态是到达DiCke状态的最佳状态。在强大的耦合方案中,这张照片在强大的耦合状态下不可胜于。我们还考虑了多种模式的扩展案例。在这种情况下,我们发现增加两级系统的数量允许达到更大的垂直光子目标的占用。

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