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Concentric transmon qubit featuring fast tunability and an anisotropic magnetic dipole moment

机译:同心传输量子比特具有快速可调性和各向异性磁偶极矩

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摘要

We present a planar qubit design based on a superconducting circuit that we call concentric transmon. While employing a straightforward fabrication process using Al evaporation and lift-off lithography, we observe qubit lifetimes and coherence times in the order of 10 μs10 μs. We systematically characterize loss channels such as incoherent dielectric loss, Purcell decay and radiative losses. The implementation of a gradiometric SQUID loop allows for a fast tuning of the qubit transition frequency and therefore for full tomographic control of the quantum circuit. Due to the large loop size, the presented qubit architecture features a strongly increased magnetic dipole moment as compared to conventional transmon designs. This renders the concentric transmon a promising candidate to establish a site-selective passive direct ẐẐ coupling between neighboring qubits, being a pending quest in the field of quantum simulation.
机译:我们提出了一种基于超导电路的平面量子位设计,我们称其为同心跨子。当采用铝蒸镀和剥离光刻法进行简单的制造过程时,我们观察到量子位寿命和相干时间约为10μs10μs。我们系统地描述了损耗通道的特征,例如非相干介电损耗,珀塞尔衰减和辐射损耗。梯度SQUID回路的实现允许快速调整qubit跃迁频率,因此可以对量子电路进行全面的层析成像控制。由于较大的回路尺寸,与传统的transmon设计相比,本发明的qubit架构具有大大增加的磁偶极矩。这使得同心跨晶成为在相邻量子位之间建立位点选择性无源直接ZaẐ耦合的有前途的候选者,这是量子模拟领域的未决任务。

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