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首页> 外文期刊>The Journal of Chemical Physics >Optimal Hamiltonian identification: The synthesis of quantum optimal control and quantum inversion
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Optimal Hamiltonian identification: The synthesis of quantum optimal control and quantum inversion

机译:最优汉密尔顿辨识:量子最优控制与量子反演的综合

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We introduce optimal identification (OI), a collaborative laboratory/computational algorithm for extracting quantum Hamiltonians from experimental data specifically sought to minimize the inversion error. OI incorporates the components of quantum control and inversion by combining ultrafast pulse shaping technology and high throughput experiments with global inversion techniques to actively identify quantum Hamiltonians from tailored observations The OI concept rests on the general notion that optimal data can be measured under the influence of suitable controls to minimize uncertainty in the extracted Hamiltonian despite data limitations such as finite resolution and noise. As an illustration of the operating principles of OI, the transition dipole moments of a multilevel quantum Hamiltonian are extracted from simulated population transfer experiments. The OI algorithm revealed a simple optimal experiment that determined the Hamiltonian matrix elements to an accuracy two orders of magnitude better than obtained from inverting 500 random data sets. The optimal and nonlinear nature of the algorithm were shown to be capable of reliably identifying the Hamiltonian even when there were more variables than observations. Furthermore, the optimal experiment acted as a tailored filter to prevent the laboratory noise from significantly propagating into the extracted Hamiltonian.
机译:我们介绍了最佳识别(OI),这是一种协作的实验室/计算算法,用于从实验数据中提取量子哈密顿量,其目的是最大程度地减小反演误差。 OI通过将超快脉冲整形技术和高通量实验与全局反演技术相结合,结合了量子控制和反演的组件,从而可以从量身定制的观测结果中主动识别量子哈密顿量。OI概念的基本概念是,可以在适当的影响下测量最佳数据尽管存在数据分辨率(例如,有限分辨率和噪声)的限制,但该控件可最大程度地减少提取的哈密顿量中的不确定性。为了说明OI的工作原理,从模拟的人口迁移实验中提取了多级量子哈密顿量的跃迁偶极矩。 OI算法揭示了一个简单的最佳实验,该实验确定汉密尔顿矩阵元素的精度比从反转500个随机数据集获得的精度好两个数量级。结果表明,即使变量多于观测值,该算法的最优和非线性性质也能够可靠地识别哈密顿量。此外,最佳实验还可以用作量身定制的滤波器,以防止实验室噪声显着传播到提取的哈密顿量中。

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