论文标题

一维玻色网凝结物的光势的迭代形状

Iterative shaping of optical potentials for one-dimensional Bose-Einstein condensates

论文作者

Deutschmann-Olek, Andreas, Tajik, Mohammadamin, Calzavara, Martino, Schmiedmayer, Jörg, Calarco, Tommaso, Kugi, Andreas

论文摘要

操纵超冷原子云的能力对于量子许多体系和量子热力学以及Bose-Einstein冷凝物的未来计量应用以及未来的计量应用至关重要。虽然光学操纵几乎具有任意的灵活性,但对产生的偶极电位的精确控制和减轻不良障碍的缓解非常涉及,并且只有到目前为止,只有具有较慢的收敛速度的启发式算法。因此,本文建议在存在不确定性和外部干扰的情况下应用迭代学习控制(ILC)方法来产生微调的有效潜力。因此,通过使用精确的输入映射,可以通过已建立的ILC方法来处理一维跟踪问题,以获得一维跟踪问题进行重新重新审议。最后,在模拟方案中说明了拟议概念的性能。

The ability to manipulate clouds of ultra-cold atoms is crucial for modern experiments on quantum manybody systems and quantum thermodynamics as well as future metrological applications of Bose-Einstein condensate. While optical manipulation offers almost arbitrary flexibility, the precise control of the resulting dipole potentials and the mitigation of unwanted disturbances is quite involved and only heuristic algorithms with rather slow convergence rates are available up to now. This paper thus suggests the application of iterative learning control (ILC) methods to generate fine-tuned effective potentials in the presence of uncertainties and external disturbances. Therefore, the given problem is reformulated to obtain a one-dimensional tracking problem by using a quasicontinuous input mapping which can be treated by established ILC methods. Finally, the performance of the proposed concept is illustrated in a simulation scenario.

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