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Jaynes-Cummings treatment of superconducting resonators with dielectric loss due to two-level systems

机译:Jaynes-Cummings处理具有两级系统的介电损耗的超导谐振器

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We perform a quantum mechanical analysis of superconducting resonators subject to dielectric loss arising from charged two-level systems. We present numerical and analytical descriptions of the dynamics of energy decay fipm the resonator within the Jaynes-Cummings model. Our analysis allows us to distinguish the strong and weak coupling regimes of the model and to describe within each regime cases where the two-level system is unsaturated or saturated. We find that the quantum theory agrees with the classical model for weak coupling. However, for strong coupling the quantum theory predicts lower loss than the classical theory in the unsaturated regime. Also, in contrast to the classical theory, the photon number at which saturation occurs in the strong coupling quantum theory is independent of the coupling between the resonator and the two-level system.
机译:我们对超导谐振器进行量子力学分析,该超导谐振器会受到由带电两级系统引起的介电损耗的影响。我们在Jaynes-Cummings模型内,给出了谐振器能量衰减动力学的数值和分析描述。我们的分析使我们能够区分模型的强耦合机制和弱耦合机制,并在每种机制下描述两级系统不饱和或饱和的情况。我们发现,量子理论与弱耦合的经典模型一致。但是,对于强耦合,在不饱和状态下,量子理论预测的损耗要低于经典理论。而且,与经典理论相反,在强耦合量子理论中发生饱和的光子数与谐振器与两能级系统之间的耦合无关。

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