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Anomalous Avoided Level Crossings In A Cooper-pair Box Spectrum

机译:库珀对盒谱中的异常避免平交

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摘要

We have observed a few distinct anomalous avoided level crossings and voltage-dependent transitions in the excited-state spectrum of an Al/AlO_x/Al Cooper-pair box (CPB). The device was measured at 40 mK in the 15-50 GHz frequency range. We find that a given level crosses the CPB spectrum at two different gate voltages; the frequency and splitting size of the two crossings differ and the splitting size depends on the Josephson energy of the CPB. We show that this behavior is not only consistent with the CPB being coupled to discrete charged "two-level" quantum systems, which move atomic distances in the CPB junctions, but that the spectra provide information about the fluctuators, which is not available from phase qubit spectra of anomalous avoided levels. In particular by fitting a model Hamiltonian to our data, we extract microscopic parameters for each fluctuator, including well asymmetry, tunneling amplitude, and the minimum hopping distance for each fluctuator. The tunneling rates range from less than 3.5-13 GHz, which represent values between 5 and 150% of the well asymmetry, and the dipole moments give a minimum hopping distance of 0.3-0.8 A. We have also found that these discrete two-level systems have a pronounced effect on the relaxation time (T_1) of the quantum states of the CPB and hence can be a source of dissipation for superconducting quantum bits.
机译:我们在Al / AlO_x / Al Cooper-pair盒(CPB)的激发态谱中观察到了一些明显的异常避免的能级交叉和依赖电压的跃迁。在15-50 GHz频率范围内以40 mK测量该设备。我们发现,给定的电平在两个不同的栅极电压下越过CPB频谱。两个交叉点的频率和分裂大小不同,分裂大小取决于CPB的约瑟夫森能量。我们表明,这种行为不仅与CPB耦合到离散的带电“两能级”量子系统(在CPB结中移动原子距离)相一致,而且光谱还提供了有关涨落的信息,该信息无法从相位获得异常避免水平的量子比特谱。特别是通过将模型哈密顿量拟合到我们的数据中,我们为每个波动器提取了微观参数,包括井的不对称性,隧穿幅度和每个波动器的最小跳跃距离。隧穿速率的范围小于3.5-13 GHz,代表了井不对称性的5%至150%,偶极矩给出的最小跳变距离为0.3-0.8A。我们还发现,这些离散的两级系统对CPB量子态的弛豫时间(T_1)有显着影响,因此可能成为超导量子位耗散的来源。

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