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Controllable coupling and quantum correlation dynamics of two double quantum dots coupled via a transmission line resonator

机译:通过传输线谐振器耦合的两个双量子点的可控耦合和量子相关动力学

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We propose a theoretical scheme to generate a controllable and switchable coupling between two double-quantum-dot (DQD) spin qubits by using a transmission line resonator (TLR) as a bus system. We study dynamical behaviors of quantum correlations described by entanglement correlation (EC) and discord correlation (DC) between two DQD spin qubits when the two spin qubits and the TLR are initially prepared in X-type quantum states and a coherent state, respectively. We demonstrate that in the EC death regions there exist DC stationary states in which the stable DC amplification or degradation can be generated during the dynamical evolution. It is shown that these DC stationary states can be controlled by initial-state parameters, the coupling, and detuning between qubits and the TLR. We reveal the full synchronization and anti-synchronization phenomena in the EC and DC time evolution, and show that the EC and DC synchronization and anti-synchronization depends on the initial-state parameters of the two DQD spin qubits. It is shown that the initial quantum correlation may be suppressed completely when the evolution time approaches to the infinity in the presence of dissipation. These results shed new light on dynamics of quantum correlations.
机译:我们提出一种理论方案,通过使用传输线谐振器(TLR)作为总线系统,在两个双量子点(DQD)自旋量子位之间生成可控和可切换的耦合。我们研究两个DQD自旋量子位之间的纠缠相关(EC)和不和谐相关(DC)时描述的量子相关动力学行为,这两个自旋量子位和TLR分别最初准备为X型量子态和相干态时。我们证明,在EC死亡区域中存在DC稳态,在动态演化过程中可以生成稳定的DC放大或退化。结果表明,这些直流稳态可通过初始状态参数,量子位与TLR之间的耦合和失谐来控制。我们揭示了EC和DC时间演化中的完全同步和反同步现象,并表明EC和DC同步和反同步取决于两个DQD自旋量子位的初始状态参数。结果表明,当存在耗散时,演化时间接近无穷大时,初始量子相关性可能被完全抑制。这些结果为量子相关动力学提供了新的思路。

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