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Asymptotic evolution of quantum walks on the N-cycle subject to decoherence on both the coinand position degrees of freedom

机译:量子游走在N周期上的渐近演化受硬币和位置自由度的退相干的影响

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摘要

Consider a discrete-time quantum walk on the N-cycle subject to decoherence both on the coin and the position degrees of freedom. By examining the evolution of the density matrix of the system, we derive some conclusions about the asymptotic behavior of the system. When N is odd, the density matrix of the system tends, in the long run, to the maximally mixed state, independent of the initial state. When N is even, although the behavior of the system is not necessarily asymptotically stationary, in this case too an explicit formulation is obtained of the asymptotic dynamics of the system. Moreover, this approach enables us to specify the limiting behavior of the mutual information, viewed as a measure of quantum entanglement between subsystems (coin and walker). In particular, our results provide efficient theoretical confirmation of the findings of previous authors, who have arrived at their results through extensive numerical simulations. Our results can be attributed to an important theorem which, for a generalized random unitary operation, explicitly identifies the structure of all of its eigenspaces corresponding to eigenvalues of unit modulus.
机译:考虑在N周期上的离散时间量子行走,同时在硬币和位置自由度上均会出现退相干。通过检查系统密度矩阵的演化,我们得出有关系统渐近行为的一些结论。当N为奇数时,从长远来看,系统的密度矩阵趋向于最大混合状态,而与初始状态无关。当N为偶数时,尽管系统的行为不一定是渐近稳定的,但在这种情况下,也可以得到系统渐近动力学的明确表述。此外,这种方法使我们能够指定互信息的限制行为,将其视为子系统(硬币和沃克)之间量子纠缠的量度。特别是,我们的结果为先前作者的发现提供了有效的理论确认,他们通过广泛的数值模拟得出了他们的结果。我们的结果可以归因于一个重要的定理,对于一个广义的随机unit运算,该定理明确标识了其所有与单元模量特征值相对应的特征空间的结构。

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