Institut für Experimentalphysik, Universität Innsbruck, A-6020 Innsbruck, Austria.
Departamento de Física Teórica I, Universidad Complutense, 28040 Madrid, Spain.
Science. 2014 Jul 18;345(6194):302-5. doi: 10.1126/science.1253742. Epub 2014 Jun 12.
The construction of a quantum computer remains a fundamental scientific and technological challenge because of the influence of unavoidable noise. Quantum states and operations can be protected from errors through the use of protocols for quantum computing with faulty components. We present a quantum error-correcting code in which one qubit is encoded in entangled states distributed over seven trapped-ion qubits. The code can detect one bit flip error, one phase flip error, or a combined error of both, regardless on which of the qubits they occur. We applied sequences of gate operations on the encoded qubit to explore its computational capabilities. This seven-qubit code represents a fully functional instance of a topologically encoded qubit, or color code, and opens a route toward fault-tolerant quantum computing.
由于不可避免的噪声的影响,构建量子计算机仍然是一个基础科学和技术挑战。通过使用带有故障组件的量子计算协议,可以保护量子状态和操作免受错误的影响。我们提出了一种量子纠错码,其中一个量子位被编码为纠缠态,分布在七个囚禁离子量子位上。该代码可以检测一位翻转错误、一位相位翻转错误或两者的组合错误,无论它们发生在哪个量子位上。我们对编码量子位应用了一系列门操作序列,以探索其计算能力。这个七量子位的代码代表了拓扑编码量子位或颜色码的完全功能实例,并为容错量子计算开辟了一条道路。