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Harvesting Multiqubit Entanglement from Ultrastrong Interactions in Circuit Quantum Electrodynamics

机译:从电路量子电动力学中的超强相互作用中收集多量子位纠缠

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摘要

We analyze a multi-qubit circuit QED system in the regime where the qubit-photon coupling dominates over the system’s bare energy scales. Under such conditions a manifold of low-energy states with a high degree of entanglement emerges. Here we describe a time-dependent protocol for extracting these quantum correlations and converting them into well-defined multi-partite entangled states of non-interacting qubits. Based on a combination of various ultrastrong-coupling effects the protocol can be operated in a fast and robust manner, while still being consistent with experimental constraints on switching times and typical energy scales encountered in superconducting circuits. Therefore, our scheme can serve as a probe for otherwise inaccessible correlations in strongly-coupled circuit QED systems. It also shows how such correlations can potentially be exploited as a resource for entanglement-based applications.
机译:我们分析了一种多量子位电路QED系统,在该系统中,量子位-光子耦合在系统的裸能量规模上占主导地位。在这样的条件下,出现了高度纠缠的低能态流形。在这里,我们描述了一种与时间有关的协议,用于提取这些量子相关性并将其转换为非相互作用量子位的定义明确的多粒子纠缠态。基于各种超强耦合效应的组合,该协议可以以快速,强大的方式运行,同时仍与实验条件有关的开关时间和超导电路中遇到的典型能量规模保持一致。因此,我们的方案可以作为强耦合电路QED系统中否则无法访问的相关性的探查。它还显示了如何将此类相关性潜在地用作基于纠缠的应用程序的资源。

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