Control of entanglement and non-classical effects in circuit QED

Y. Ji
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Abstract

Through manipulating the external capacitor or external classical microwave impulse, the coupling between superconducting qubits and cavity can be manipulated, the entanglement effect between field modes can be enhanced and the decoherence effect can be effectively suppressed. Further investigations indicate that, the time evolution of the quantum entanglement between field modes is always accompanied by the synchronous changes of certain non-classical effect. Once entanglement sudden death occurs, the non-classical effects disappear.
电路QED中纠缠和非经典效应的控制
通过操纵外部电容或外部经典微波脉冲,可以操纵超导量子比特与空腔之间的耦合,增强场模之间的纠缠效应,有效抑制退相干效应。进一步的研究表明,场模间量子纠缠的时间演化总是伴随着某些非经典效应的同步变化。一旦发生纠缠猝死,非经典效应消失。
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