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Accuracy of quantum-state estimation utilizing Akaike's information criterion

机译:利用赤池信息准则估算量子态的准确性

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摘要

We report our theoretical and experimental investigations into errors in quantum state estimation, putting a special emphasis on their asymptotic behavior. Tomographic measurements and maximum likelihood estimation are used for estimating several kinds of identically prepared quantum states (bi-photon polarization states) produced via spontaneous parametric down-conversion. Excess errors in the estimation procedures are eliminated by introducing a new estimation strategy utilizing Akaike's information criterion. We make a quantitative comparision between the errors of the experimentally estimated states and their asymptotic lower bounds, which are derived from the Cram\'{e}r-Rao inequality. Our results reveal influence of entanglement on the errors in the estimation. An alternative measurement strategy employing inseparable measurements is also discussed, and its performance is numerically explored.
机译:我们报告了我们对量子态估计误差的理论和实验研究,特别强调了它们的渐近行为。层析成像测量和最大似然估计用于估计通过自发参数下转换产生的几种相同准备的量子态(双光子极化态)。通过采用Akaike的信息准则引入一种新的估算策略,可以消除估算程序中的过多错误。我们在实验估计状态的误差与其渐近下限之间进行定量比较,这些误差是从Cram'{e} r-Rao不等式得出的。我们的结果揭示了纠缠对估计误差的影响。还讨论了采用不可分测量的替代测量策略,并在数值上探索了其性能。

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