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Characterization of control noise effects in optimal quantum unitary dynamics

机译:最优量子unit动力学中控制噪声效应的表征

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This work develops measures for quantifying the effects of field noise upon targeted unitary transformations. Robustness to noise is assessed in the framework of the quantum control landscape, which is the mapping from the control to the unitary transformation performance measure (quantum gate fidelity). Within that framework, a geometric interpretation of stochastic noise effects naturally arises, where more robust optimal controls are associated with regions of small overlap between landscape curvature and the noise correlation function. Numerical simulations of this overlap in the context of quantum information processing reveal distinct noise spectral regimes that better support robust control solutions. This perspective shows the dual importance of both noise statistics and the control form for robustness, thereby opening up new avenues of investigation on how to mitigate noise effects in quantum systems.
机译:这项工作制定了量化目标单元转换场噪声影响的措施。在量子控制领域的框架中评估了噪声的鲁棒性,这是从控制到单一变换性能度量(量子门保真度)的映射。在该框架内,自然会出现对随机噪声影响的几何解释,其中,更强大的最佳控制与景观曲率和噪声相关函数之间小的重叠区域相关。在量子信息处理的背景下,这种重叠的数值模拟显示了独特的噪声频谱机制,可以更好地支持鲁棒的控制解决方案。这种观点表明了噪声统计和控制形式对于鲁棒性的双重重要性,从而为研究如何减轻量子系统中的噪声影响开辟了新的途径。

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