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首页> 外文期刊>Annals of Physics >Improved quantum state transfer via quantum partially collapsing measurements
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Improved quantum state transfer via quantum partially collapsing measurements

机译:通过量子部分塌缩测量来改善量子态转移

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In this work, we present a general scheme to improve quantum state transfer (QST) by taking advantage of quantum partially collapsing measurements. The scheme consists of a weak measurement performed at the initial time on the qubit encoding the state of concern and a subsequent quantum reversal measurement at a desired time on the destined qubit. We determine the strength qr of the post quantum reversal measurement as a function of the strength p of the prior weak measurement and the evolution time t so that near-perfect QST can be achieved by choosing p close enough to 1, with a finite success probability, regardless of the evolution time and the distance over which the QST takes place. The merit of our scheme is twofold:it not only improves QST, but also suppresses the energy dissipation, if any.
机译:在这项工作中,我们提出了一种利用量子部分塌陷测量来改善量子态转移(QST)的通用方案。该方案包括在初始时间对编码关注状态的量子位执行的弱测量,以及在指定时间对目的地量子位进行的随后的量子反转测量。我们确定后量子反转测量的强度qr与先前弱测量的强度p和演化时间t的函数关系,以便通过选择p足够接近1来获得接近完美的QST,且成功概率有限,而不考虑演化时间和QST发生的距离。我们方案的优点是双重的:它不仅可以改善QST,而且可以抑制能耗(如果有)。

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