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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Optimal control methods for rapidly time-varying Hamiltonians
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Optimal control methods for rapidly time-varying Hamiltonians

机译:快速时变哈密顿量的最优控制方法

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In this article, we develop a numerical method to find optimal control pulses that accounts for the separation of timescales between the variation of the input control fields and the applied Hamiltonian. In traditional numerical optimization methods, these timescales are treated as being the same. While this approximation has had much success, in applications where the input controls are filtered substantially or mixed with a fast carrier, the resulting optimized pulses have little relation to the applied physical fields. Our technique remains numerically efficient in that the dimension of our search space is only dependent on the variation of the input control fields, while our simulation of the quantum evolution is accurate on the timescale of the fast variation in the applied Hamiltonian.
机译:在本文中,我们开发了一种找到最佳控制脉冲的数值方法,该方法考虑了输入控制字段的变化与所应用的哈密顿量之间的时标分离。在传统的数值优化方法中,这些时间尺度被视为相同。尽管这种近似已取得很大成功,但在输入控制被实质性滤波或与快速载波混合的应用中,所产生的优化脉冲与所施加的物理场几乎没有关系。我们的技术在数值上仍然有效,因为我们搜索空间的大小仅取决于输入控制场的变化,而我们对量子演化的仿真在所应用的哈密顿量的快速变化的时标上是准确的。

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