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Decoherence In Dc Squid Phase Qubits

机译:DC鱿鱼相位量子位中的退相干

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We report measurements of'Rabi oscillations and spectroscopic coherence times in an Al/AlO_x/Al and three Nb/AlO_x/Nb dc SQUID phase qubits. One junction of the SQUID acts as a phase qubit and the other junction acts as a current-controlled nonlinear isolating inductor, allowing us to change the coupling to the current bias leads in situ by an order of magnitude. We found that for the Al qubit, a spectroscopic coherence time T_2~* varied from 3 to 7 ns and the decay envelope of Rabi oscillations had a time constant T' =25 ns on average at 80 mK. The three Nb devices also showed T_2~* in the range of 3-8 ns, but T' was 9-15 ns, just about 1/2 the value we found in the Al device. For all the devices, the time constants were roughly independent of the isolation from the bias lines, implying that noise and dissipation from the bias leads were not the principal sources of dephasing and inhomogeneous broadening.
机译:我们报告了在Al / AlO_x / Al和三个Nb / AlO_x / Nb dc SQUID相位量子位中'Rabi振荡和光谱相干时间的测量结果。 SQUID的一个结用作相位量子比特,另一个结用作电流控制的非线性隔离电感器,这使我们能够就地改变与电流偏置引线的耦合量级。我们发现,对于Al量子位,光谱相干时间T_2〜*从3到7 ns不等,Rabi振荡的衰减包络在80 mK处的平均时间常数T'= 25 ns。这三个Nb器件的T_2〜*也处于3-8 ns的范围内,但是T'为9-15 ns,仅为我们在Al器件中发现的值的1/2左右。对于所有器件,时间常数大致独立于与偏置线的隔离度,这表明偏置引线的噪声和耗散不是移相和不均匀加宽的主要来源。

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