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Insufficiency of avoided crossings for witnessing large-scale quantum coherence in flux qubits

机译:避免交叉的不足,以证人在助焊剂QUBITS中的大规模量子相干性

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Do experiments based on superconducting loops segmented with Josephson junctions (e.g., flux qubits) show macroscopic quantum behavior in the sense of Schr?dinger's cat example? Various arguments based on microscopic and phenomenological models were recently adduced in this debate. We approach this problem by adapting (to flux qubits) the framework of large-scale quantum coherence, which was already successfully applied to spin ensembles and photonic systems. We show that contemporary experiments might show quantum coherence more than 100 times larger than experiments in the classical regime. However, we argue that the often-used demonstration of an avoided crossing in the energy spectrum is not sufficient to make a conclusion about the presence of large-scale quantum coherence. Alternative, rigorous witnesses are proposed.
机译:基于超导环的实验与Josephsephson结区(例如,助焊剂QUBITS)分段显示宏观量子行为在SCHR?Dinger的猫的例子中? 基于微观和现象模型的各种论点最近在本次辩论中引入。 我们通过调整(磁通符号)大规模量子相干框架来解决这个问题,这已经成功地应用于旋转集合和光子系统。 我们表明,当代实验可能会显示出量子相干性比经典制度的实验大超过100倍。 然而,我们认为,在能谱中避免交叉的经常使用的演示是不足以结论大规模量子相干性的结论。 替代,提出了严谨的证人。

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