论文标题

将超导量子耦合到左手超材料谐振器

Coupling a Superconducting Qubit to a Left-Handed Metamaterial Resonator

论文作者

Indrajeet, S., Wang, H., Hutchings, M. D., Taketani, B. G., Wilhelm, Frank K., LaHaye, M. D., Plourde, B. L. T.

论文摘要

由超导电路电路元件阵列制成的超材料谐振结构可以表现出具有左手分散的微波模式光谱,从而在相同的频率范围内产生高密度的模式,在相同的频率范围内,通常会在较低的频率下运行超导速度的频率,并在较低的频率下延伸至DC。使用这种新型制度用于多模式电路量子电动力学,我们对这种超导不良的谐振器进行了一系列测量,并与通量可调的transmon量子轴结合。通过对超材料的微波测量,我们观察到了量子的耦合与它通过的每种模式的耦合。使用单独的读出谐振器,我们已经分散地探测了量子的量子,并表征了量子能量弛豫是频率的函数,在存在密度模式谱的存在下,该频率受Purcell效应的强烈影响。此外,随着各种超材料模式中的光子数的变化,我们已经研究了量子量的AC Stark Shift。通过选择电路参数来量身定制致密模式频谱并通过与量子A的相互作用来操纵超材料的光子状态的能力使这是模拟量子模拟和量子记忆的有前途的平台。

Metamaterial resonant structures made from arrays of superconducting lumped circuit elements can exhibit microwave mode spectra with left-handed dispersion, resulting in a high density of modes in the same frequency range where superconducting qubits are typically operated, as well as a bandgap at lower frequencies that extends down to dc. Using this novel regime for multi-mode circuit quantum electrodynamics, we have performed a series of measurements of such a superconducting metamaterial resonator coupled to a flux-tunable transmon qubit. Through microwave measurements of the metamaterial, we have observed the coupling of the qubit to each of the modes that it passes through. Using a separate readout resonator, we have probed the qubit dispersively and characterized the qubit energy relaxation as a function of frequency, which is strongly affected by the Purcell effect in the presence of the dense mode spectrum. Additionally, we have investigated the ac Stark shift of the qubit as the photon number in the various metamaterial modes is varied. The ability to tailor the dense mode spectrum through the choice of circuit parameters and manipulate the photonic state of the metamaterial through interactions with qubits makes this a promising platform for analog quantum simulation and quantum memories.

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