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Efficiency of underdamped dc SQUIDs as readout devices for flux qubits

机译:欠阻尼直流SQUID作为磁通量比特读出设备的效率

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摘要

The flux state quantum bit (qubit) is promising for a solid state implementation of scalable quantum computing. The simplest flux state qubit consists of an rf SQUID with two fluxoid states, which can be readout with a dc SQUID - the most sensitive magnetic flux detector. Efficient readout with less back-action is desirable for quantum computing. In this work, we report measurements of the switching flux and switching current distributions of under damped dc SQUIDs. The data show that single shot readout of flux qubit with very high efficiency (<99%) can be realized using underdamped hysteretic dc SQUIDs.
机译:通量状态量子位(qubit)有望用于可扩展量子计算的固态实现。最简单的磁通状态量子位由具有两个磁通状态的射频SQUID组成,可以用最敏感的磁通检测器dc SQUID读出。量子计算需要具有较少反作用的有效读数。在这项工作中,我们报告了在阻尼直流SQUID下的开关磁通和开关电流分布的测量结果。数据表明,使用欠阻尼的迟滞直流SQUID可以实现非常高的效率(<99%)单次读取通量量子比特。

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