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Bell-state generation in circuit QED via Landau-Zener tunneling

机译:钟声通过Landau-Zener隧道电路中的电路

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A qubit may undergo Landau-Zener transitions due to its coupling to one or several quantum harmonic oscillators. First we show that for a qubit coupled to one oscillator, Landau-Zener transitions can be used for single-photon generation and for the controllable creation of qubit-oscillator entanglement, with state-of-the-art circuit QED as a promising realization. Second, for a qubit coupled to two cavities, we show that Landau-Zener sweeps of the qubit are well suited for the robust creation of entangled cavity states, in particular symmetric Bell states, with the qubit acting as the entanglement mediator. Finally, for a qubit coupled to an environment or bath we propose to employ dissipative Landau-Zener sweeps of the qubit for the detection of bath properties. At the heart of our proposals lies the calculation of the exact Landau-Zener transition probability for the qubit, by summing all orders of the corresponding series in time-dependent perturbation theory.
机译:由于其耦合到一个或多个量子谐波振荡器,Qubit可能接受Landau-zener转换。首先,我们表明,对于耦合到一个振荡器的Qubit,Landau-Zener转换可用于单光子生成和用于Qubit-振荡器纠缠的可控创建,具有最先进的电路作为有希望的实现。其次,对于耦合到两个腔的Qubit,我们表明Qubit的Landau-Zener扫描非常适合于纠缠腔状态,特别是对称铃声状态的鲁棒创建,其Qubit作用作为纠缠介质。最后,对于Qubit耦合到环境或浴室,我们建议采用耗散Landau-zener扫描量的浴室,以检测浴性能。在我们的建议中,通过在时间依赖的扰动理论中求和相应序列的所有订单来计算QUBit的确切Landau-Zener转换概率。

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