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Modulation of entanglement for coupled superconducting qubits under non-Markovian environment

机译:非马尔可夫环境下耦合超导量子位纠缠的调制

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摘要

The evolution of entanglement decoherence is investigated for a coupled superconducting qubit under non-Markovian environment by utilizing a commensal entanglement degree. The results show that, owing to the memory feedback effect of environment, the entanglement degree of the coupled qubits at the thermal equilibrium always monotonously tends to zero so that entanglement sudden death occurs briefly in the non-Markovian process. Different from the Markovian process, stronger the dissipation is, faster the entanglement sudden death is. We find that, furthermore, the interaction between the qubits results generally in reduction of entanglement degree in the quantum system. With some special initial states or initial phase angles, however, the influence of the interaction between qubits on the system entanglement degree can be avoided.
机译:利用共模纠缠度研究了非马氏环境下耦合超导量子位纠缠相干的演化。结果表明,由于环境的记忆反馈作用,耦合量子比特在热平衡时的纠缠度总是单调趋于零,从而在非马尔可夫过程中短暂发生纠缠猝死。与马尔可夫过程不同,耗散越强,纠缠猝死越快。我们发现,此外,量子位之间的相互作用通常导致量子系统中的纠缠度降低。但是,在某些特殊的初始状态或初始相位角的情况下,可以避免量子位之间的相互作用对系统纠缠度的影响。

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