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Characterization of energy potential in tunable rf-SQUIDs with the classical regime toward precise design of superconducting flux qubit

机译:具有经典制度朝着超导通量QUB比特精确设计的可调射频鱿鱼能量势的特征

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摘要

The detailed characteristics of classical states in a radio-frequency superconducting quantum interference device (rf-SQUID) with well-designed energy-potential shape are investigated at 4.2 K. Using Nb/AlO (x) standard process which enables precise circuit-parameter implementation, the rf-SQUID is designed in its energy potential. Directions of persistent current can be distinguished in the rf-SQUID we have fabricated. Analyses in circuit simulations indicate the device design based on enough high critical current provides available parameters to construct the device for 10 mK measurement by circuit-parameter scaling. This knowledge may contribute to the precise design of the rf-SQUID for superconducting qubit through device process with lower critical current density.
机译:在4.2K的4.2K下研究了具有良好设计的能量形状的射频超导量子干扰装置(RF-Squid)中经典状态的详细特性。使用NB / ALO(X)标准过程,该方法能够实现精确的电路参数实现 ,RF-Squid采用能源潜力设计。 在我们制造的RF-Squid中可以区分持续电流的方向。 电路模拟中的分析表明,基于足够的高临界电流的设备设计提供了可用参数,以通过电路参数缩放构造10 MK测量的设备。 通过具有较低临界电流密度的器件过程,该知识可能有助于超导QUBBit的RF鱿鱼的精确设计。

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