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Superconducting nanowires as nonlinear inductive elements for qubits

机译:超导纳米线作为量子位的非线性感应元件

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摘要

We report microwave transmission measurements of superconducting Fabry-Perot resonators, having a superconducting nanowire placed at a supercurrent antinode. As the plasma oscillation is excited, the supercur-rent is forced to flow through the nanowire. The microwave transmission of the resonator-nanowire device shows a nonlinear resonance behavior, significantly dependent on the amplitude of the supercurrent oscillation. We show that such amplitude-dependent response is due to the nonlinearity of the current-phase relationship of the nanowire. The results are explained within a nonlinear oscillator model of the Duffing oscillator, in which the nanowire acts as a purely inductive element, in the limit of low temperatures and low amplitudes. The low-quality factor sample exhibits a "crater" at the resonance peak at higher driving power, which is due to dissipation. We observe a hysteretic bifurcation behavior of the transmission response to frequency sweep in a sample with a higher quality factor. The Duffing model is used to explain the Duffing bistability diagram. We also propose a concept of a nanowire-based qubit that relies on the current dependence of the kinetic inductance of a superconducting nanowire.
机译:我们报告了超导法布里-珀罗谐振器的微波传输测量,该超导法布里-珀罗谐振器具有置于超电流波腹处的超导纳米线。随着等离子体振荡的激发,超电流被迫流过纳米线。谐振器-纳米线装置的微波传输表现出非线性谐振行为,这很大程度上取决于超电流振荡的幅度。我们表明,这种依赖于幅度的响应是由于纳米线的电流-相位关系的非线性所致。在Duffing振荡器的非线性振荡器模型中解释了结果,其中在低温和低振幅的限制下,纳米线充当纯感应元件。低品质因数的样本在较高的驱动功率下会在共振峰处出现“凹陷”,这是由于耗散造成的。我们在具有较高品质因数的样品中观察到传输响应对频率扫描的滞后分叉行为。 Duffing模型用于解释Duffing双稳态图。我们还提出了一种基于纳米线的量子位的概念,该概念依赖于超导纳米线的动态电感的电流依赖性。

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