论文标题

实现多体量子动力学的快速高保真最佳控制

Achieving fast high-fidelity optimal control of many-body quantum dynamics

论文作者

Jensen, Jesper Hasseriis Mohr, Møller, Frederik Skovbo, Sørensen, Jens Jakob, Sherson, Jacob Friis

论文摘要

我们通过将其应用于具有挑战性的多体问题,将其应用于Bose-Hubbard模型中的Mott-Mundruid到Mott-unsulator相变。系统尺寸需要矩阵乘积状态表示形式,并且与算法的要求无缝集成。我们观察到0.99-0.9999范围内的保真度,相关的最小过程持续时间估计值显示了多个数量级的指数忠诚度持续权权衡。相应的最佳溶液的特征是在临界点上以线性扫描,然后是爆炸式结构。这与较早的无梯度优化确定的平滑和单调解决方案完全不同,这些解决方案在低过程持续时间在高效率方面的较高复杂性方案时受到阻碍。总体而言,该比较表明在理想的开环环境中多体系统的方法学改进也有重大改进。认识到理想化的开环控制可能会在实际实验中恶化,我们讨论了将这种方法与闭环控制结合使用的优点 - 特别是,与前者一起提取的高效率物理见解可用于制定后者的实用,低维度搜索空间。

We demonstrate the efficiency of a recent exact-gradient optimal control methodology by applying it to a challenging many-body problem, crossing the superfluid to Mott-insulator phase transition in the Bose-Hubbard model. The system size necessitates a matrix product state representation and this seamlessly integrates with the requirements of the algorithm. We observe fidelities in the range 0.99-0.9999 with associated minimal process duration estimates displaying an exponential fidelity-duration trade-off across several orders of magnitude. The corresponding optimal solutions are characterized in terms of a predominantly linear sweep across the critical point followed by bang-bang-like structure. This is quite different from the smooth and monotonic solutions identified by earlier gradient-free optimizations which are hampered in locating the higher complexity protocols in the regime of high-fidelities at low process durations. Overall, the comparison suggests significant methodological improvements also for many-body systems in the ideal open-loop setting. Acknowledging that idealized open-loop control may deteriorate in actual experiments, we discuss the merits of using such an approach in combination with closed-loop control -- in particular, high-fidelity physical insights extracted with the former can be used to formulate practical, low-dimensional search spaces for the latter.

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