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首页> 外文期刊>Physics Letters, A >An endohedral fullerene-based nuclear spin quantum computer
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An endohedral fullerene-based nuclear spin quantum computer

机译:基于内层富勒烯的核自旋量子计算机

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We propose a new scalable quantum computer architecture based on endohedral fullerene molecules. Qubits are encoded in the nuclear spins of the endohedral atoms, which posses even longer coherence times than the electron spins which are used as the qubits in previous proposals. To address the individual qubits, we use the hyperfine interaction, which distinguishes two modes (active and passive) of the nuclear spin. Two-qubit quantum gates are effectively implemented by employing the electronic dipolar interaction between adjacent molecules. The electron spins also assist in the qubit initialization and readout. Our architecture should be significantly easier to implement than earlier proposals for spin-based quantum computers, such as the concept of Kane [B.E. Kane, Nature 393 (1998) 133].
机译:我们提出了一种新的基于内面富勒烯分子的可扩展量子计算机体系结构。量子位被编码在内面原子的核自旋中,相干时间比在以前的建议中用作量子位的电子自旋更长。为了解决单个量子位,我们使用超精细相互作用,它区分了核自旋的两种模式(主动和被动)。通过利用相邻分子之间的电子偶极相互作用,可以有效地实现两个量子位的量子门。电子自旋还有助于量子位的初始化和读出。与早期的基于自旋的量子计算机的提议(例如Kane [B.E.凯恩,自然393(1998)133]。

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