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Entanglement generation through the interplay of harmonic driving and interaction in coupled superconducting qubits

机译:通过谐波驾驶的相互作用和耦合超导Qubits的交互的纠缠生成

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We study the manipulation of quantum entanglement by periodic external fields. As an entanglement measure we compute numerically the concurrence of two coupled superconducting qubits both driven by a dc + ac external control parameter. We show that when the driving term of the Hamiltonian commutes with the qubit-qubit interaction term, it is possible to create or destroy entanglement in a controlled way by tuning the system at or near multiphoton resonances. On the other hand, when the driving does not commute with the qubit-qubit interaction, the control and generation of entanglement induced by the driving field is more robust and extended in parameter space, beyond the multiphoton resonances.
机译:我们研究了定期外部领域的量子纠缠。 作为纠缠测量,我们计算由DC + AC外部控制参数驱动的两个耦合超导Qubits的两种耦合超导Qubits的同意。 我们表明,当Hamiltonian的驱动期与Qubit-Qubit互动项通信时,可以通过在多光子共振或附近调谐系统或近的系统来以受控方式创建或破坏缠结。 另一方面,当驾驶不与Qubit-Qubit交互通行时,驱动场引起的缠结的控制和产生在参数空间中更鲁棒,在参数空间中延伸,超出多光子谐振。

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