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Entanglement Research for the Coupled Superconducting Phase Qubit and a Two-Level System

机译:耦合超导相QUBET和双层系统的纠缠研究

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Entanglement can exist not only in the microscopic system (e.g., atom, photon, and ion trap) but also in macroscopic systems. According to recent research, entanglement can be achieved and controlled in superconducting devices. The quantum dynamics and entanglement mechanism of the coupled superconducting phase qubit and a two-level system (TLS) were demonstrated when the bipartite system was under microwave driving. Besides, the results reveal that when the system was experiencing decoherence, entanglement (concurrence) of the coupled superconducting phase qubit and TLS would oscillate damply with microwave driving time, even exhibiting concurrence sudden death and revival. The coupling effect of the superconducting qubit and TLS system and the resonant microwave together help to achieve entanglement, while concurrence death and concurrence revival are dependent on the decoherence source and mechanism, for example, the resonant microwave driving time acting on the bipartite coupling system. Furthermore, the simulation results show the entanglement of the coupled qubit and TLS system also depends on the purity of the initial states of the system. The article carried out a numerical simulation on the entanglement of different initial states, and the results showed that the entanglement of the coupled system changes with different initial states. For different initial states, entanglement, sudden death, and rejuvenation are still visible.
机译:不仅可以在显微镜系统(例如原子,光子和离子阱)中而且还可以存在于宏观系统中。根据最近的研究,可以在超导装置中实现和控制纠缠。当二分体系统在微波驾驶下时,证明了耦合超导相QUBit和两级系统(TLS)的量子动态和缠结机制。此外,结果表明,当系统遇到耦合超导相符和TLS的变形时,耦合超导相符的缠结(并发)会用微波驾驶时间振荡,甚至表现出突然死亡和复兴。超导QUBBIT和TLS系统的耦合效应和谐振微波在一起帮助实现缠结,而同时死亡和并发复位依赖于去渗源和机构,例如,作用在二分耦合系统上的谐振微波驾驶时间。此外,仿真结果表明耦合量子位和TLS系统的缠结还取决于系统初始状态的纯度。该物品对不同初始状态的纠缠进行了数值模拟,结果表明,耦合系统的纠缠随着不同的初始状态而变化。对于不同的初始状态,纠缠,突然死亡和复兴仍然可见。

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