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三级超导人工原子的控制与层析成像。

Control and tomography of a three level superconducting artificial atom.

机构信息

Department of Physics, ETH Zurich, CH-8093 Zürich, Switzerland.

出版信息

Phys Rev Lett. 2010 Nov 26;105(22):223601. doi: 10.1103/PhysRevLett.105.223601. Epub 2010 Nov 24.

Abstract

A number of superconducting qubits, such as the transmon or the phase qubit, have an energy level structure with small anharmonicity. This allows for convenient access of higher excited states with similar frequencies. However, special care has to be taken to avoid unwanted higher-level populations when using short control pulses. Here we demonstrate the preparation of arbitrary three level superposition states using optimal control techniques in a transmon. Performing dispersive readout, we extract the populations of all three levels of the qutrit and study the coherence of its excited states. Finally we demonstrate full quantum state tomography of the prepared qutrit states and evaluate the fidelities of a set of states, finding on average 95%.

摘要

许多超导量子比特,如超导转子或相位量子比特,具有小非谐性的能级结构。这使得以相似频率方便地进入更高激发态成为可能。然而,在使用短控制脉冲时,必须特别注意避免不想要的更高能级布居。在这里,我们在超导转子中使用最优控制技术演示了任意三体叠加态的制备。通过进行色散读出,我们提取出三体的所有三个能级的布居数,并研究其激发态的相干性。最后,我们演示了所制备的三体态的完全量子态层析成像,并评估了一组态的保真度,发现平均为 95%。

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