论文标题
识别14量IBM通用量子计算机上网络量子传送
Identification of networking quantum teleportation on 14-qubit IBM universal quantum computer
论文作者
论文摘要
量子传递使网络参与者能够在量子网络的节点之间移动未知的量子状态,因此构成了用量子模块化体系结构构建大型量子处理器的重要元素。本文中,我们提出了两个协议,用于通过高度输入的盒子群集状态或链型群集状态在N节量子网络中传送量子位。所提出的协议在任意有限的数字n上可以系统地扩展到适用于模块的任意大小。基于盒子群体状态的协议是在14 Quitigrust的IBM量子计算机上实施的,可用于n最多12个。要确定忠实的网络传送传送,即,我们可以使用量化量子的量级策略来实现远程计算的量级策略,以实现远程操作性,以实现网络传送过程所需的真实设备上的元素,这些元素都是有资格的。 出去。从实现真正的量子力学过程的角度来看,目前的工作提供了一个新颖的工具箱,该工具箱由网络传送协议和识别具有模块化体系结构通用量子计算机的忠实传送的标准组成,并促进了量子信息处理的可靠性。
Quantum teleportation enables networking participants to move an unknown quantum state between the nodes of a quantum network, and hence constitutes an essential element in constructing large-sale quantum processors with a quantum modular architecture. Herein, we propose two protocols for teleporting qubits through an N-node quantum network in a highly-entangled box-cluster state or chain-type cluster state. The proposed protocols are systematically scalable to an arbitrary finite number N and applicable to arbitrary size of modules. The protocol based on a box-cluster state is implemented on a 14-qubit IBM quantum computer for N up to 12. To identify faithful networking teleportation, namely that the elements on real devices required for the networking teleportation process are all qualified for achieving teleportation task, we quantify quantum-mechanical processes using a generic classical-process model through which any classical strategies of mimicry of teleportation can be ruled out. From the viewpoint of achieving a genuinely quantum-mechanical process, the present work provides a novel toolbox consisting of the networking teleportation protocols and the criteria for identifying faithful teleportation for universal quantum computers with modular architectures and facilitates further improvements in the reliability of quantum-information processing.