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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Selective pulse implementation of two-qubit gates for spin-3/2-based fullerene quantum-information processing
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Selective pulse implementation of two-qubit gates for spin-3/2-based fullerene quantum-information processing

机译:基于自旋3/2的富勒烯量子信息处理的两个量子位门的选择性脉冲实现

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摘要

We propose two potentially practical schemes to carry out two-qubit quantum gates on endohedral fullerenes N@C-60 or P@C-60. The qubits are stored in electronic spin degrees of freedom of the doped atom N or P. By means of the magnetic dipolar coupling between two neighboring fullerenes, the two-qubit controlled-NOT gate and the two-qubit conditional phase gate are performed by selective microwave pulses assisted by the refocusing technique. We will discuss the necessary additional steps for the universality of our proposal. We will also show that our proposal is useful for both quantum gating and the readout of quantum information from the spin-based qubit state.
机译:我们提出了两种潜在的实用方案,以对内面富勒烯N @ C-60或P @ C-60进行二量子位量子门。量子位以掺杂原子N或P的电子自旋自由度存储。借助于两个相邻富勒烯之间的磁偶极耦合,通过选择性地执行两个量子控制的NOT门和两个量子条件相门通过重新聚焦技术辅助微波脉冲。我们将讨论使提案具有普遍性的其他必要步骤。我们还将表明,我们的建议对于量子门控和从基于自旋的量子位状态中读取量子信息都是有用的。

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