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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Monotonically convergent optimal control theory of quantum systems under a nonlinear interaction with the control field
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Monotonically convergent optimal control theory of quantum systems under a nonlinear interaction with the control field

机译:控制场非线性交互下量子系统的单调收敛最优控制理论

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We consider the optimal control of quantum systems interacting nonlinearly with an electromagnetic field. We propose monotonically convergent algorithms to solve the optimal equations. The monotonic behavior of the algorithm is ensured by a nonstandard choice of the cost, which is not quadratic in the field. These algorithms can be constructed for pure- and mixed-state quantum systems. The efficiency of the method is shown numerically for molecular orientation with a nonlinearity of order 3 in the field. Discretizing the amplitude and the phase of the Fourier transform of the optimal field, we show that the optimal solution can be well approximated by pulses that could be implemented experimentally.
机译:我们考虑用电磁场非线性地相互作用的量子系统的最佳控制。 我们提出了单调的收敛算法来解决最佳方程。 通过非标准的成本确保了算法的单调行为,该成本在该领域不二次。 这些算法可以用于纯和混合状态量子系统。 该方法的效率在数值上示出,用于分子取向,该分子取向具有该领域中的1nstar的非线性。 离散化最佳场的傅立叶变换的幅度和相位,我们表明最佳解决方案可以通过可以通过实验实施的脉冲近似地近似。

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