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两个耦合电荷量子比特中的量子振荡。

Quantum oscillations in two coupled charge qubits.

作者信息

Pashkin Yu A, Yamamoto T, Astafiev O, Nakamura Y, Averin D V, Tsai J S

机构信息

The Institute of Physical and Chemical Research (RIKEN), Wako, Saitama 351-0198, Japan.

出版信息

Nature. 2003 Feb 20;421(6925):823-6. doi: 10.1038/nature01365.

Abstract

A practical quantum computer, if built, would consist of a set of coupled two-level quantum systems (qubits). Among the variety of qubits implemented, solid-state qubits are of particular interest because of their potential suitability for integrated devices. A variety of qubits based on Josephson junctions have been implemented; these exploit the coherence of Cooper-pair tunnelling in the superconducting state. Despite apparent progress in the implementation of individual solid-state qubits, there have been no experimental reports of multiple qubit gates--a basic requirement for building a real quantum computer. Here we demonstrate a Josephson circuit consisting of two coupled charge qubits. Using a pulse technique, we coherently mix quantum states and observe quantum oscillations, the spectrum of which reflects interaction between the qubits. Our results demonstrate the feasibility of coupling multiple solid-state qubits, and indicate the existence of entangled two-qubit states.

摘要

一台实用的量子计算机若能建成,将由一组相互耦合的两能级量子系统(量子比特)构成。在已实现的各种量子比特中,固态量子比特因其对集成器件潜在的适用性而格外引人关注。基于约瑟夫森结的多种量子比特已被实现;这些利用了超导态下库珀对隧穿的相干性。尽管在单个固态量子比特的实现方面有明显进展,但尚未有关于多量子比特门的实验报告——这是构建真正量子计算机的一项基本要求。在此,我们展示了一个由两个耦合电荷量子比特组成的约瑟夫森电路。使用脉冲技术,我们相干地混合量子态并观测到量子振荡,其频谱反映了量子比特之间的相互作用。我们的结果证明了耦合多个固态量子比特的可行性,并表明存在纠缠的两量子比特态。

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