Quantum routing of information using chiral quantum walks

IF 4.2 Q2 QUANTUM SCIENCE & TECHNOLOGY
Alberto Bottarelli, Massimo Frigerio, M. Paris
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引用次数: 1

Abstract

We address routing of classical and quantum information over quantum network and show how to exploit chirality (directionality) to achieve nearly optimal and robust transport. In particular, we prove how continuous-time chiral quantum walks over a minimal graph are able to model directional transfer of information over a network. At first, we show how classical information, encoded onto an excitation localized at one vertex of a simple graph, may be sent to any other chosen location with nearly unit fidelity by tuning a single phase. Then, we prove that high-fidelity transport is also possible for coherent superpositions of states, i.e., for routing of quantum information. Furthermore, we show that by tuning the phase parameter, one obtains universal quantum routing, i.e., independent on the input state. In our scheme, chirality is governed by a single phase, and the routing probability is robust against fluctuations of this parameter. Finally, we address characterization of quantum routers and show how to exploit the self-energies of the graph to achieve high precision in estimating the phase parameter.
使用手性量子行走的信息量子路由
我们讨论了量子网络上经典和量子信息的路由,并展示了如何利用手性(方向性)来实现近乎最优和稳健的传输。特别地,我们证明了在极小图上的连续时间手性量子行走如何能够对网络上的信息定向传输进行建模。首先,我们展示了如何通过调谐单个相位,将编码到位于简单图的一个顶点的激励上的经典信息以接近单位保真度发送到任何其他选择的位置。然后,我们证明了高保真输运对于态的相干叠加也是可能的,即对于量子信息的路由。此外,我们表明,通过调整相位参数,可以获得通用的量子路由,即独立于输入状态。在我们的方案中,手性由单个相位控制,并且路由概率对该参数的波动是鲁棒的。最后,我们讨论了量子路由器的特性,并展示了如何利用图的自能来实现相位参数估计的高精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
9.90
自引率
0.00%
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