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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >Entanglement between charge qubit states and coherent states of nanomechanical resonator generated by ac Josephson effect
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Entanglement between charge qubit states and coherent states of nanomechanical resonator generated by ac Josephson effect

机译:充电QUBBET状态与AC Josephson效应产生的纳米力学谐振器连贯状态之间的纠缠

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摘要

We considered a nanoelectromechanical system consisting of a movable Cooper-pair box qubit, which is subject to an electrostatic field, and coupled to the two bulk superconductors via tunneling processes. We suggest that qubit dynamics is related to that of a quantum oscillator and demonstrate that a bias voltage applied between superconductors generates states represented by the entanglement of qubit states and coherent states of the oscillator if certain resonant conditions are fulfilled. It is shown that a structure of this entanglement may be controlled by the bias voltage in a way that gives rise to the entanglement incorporating so-called cat-states-the superposition of coherent states. We characterize the formation and development of such states analyzing the entropy of entanglement and corresponding Wigner function. The experimentally feasible detection of the effect by measuring the average current is also considered.
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