论文标题
打破超导量子的快速控制与长寿命之间的权衡
Breaking the trade-off between fast control and long lifetime of a superconducting qubit
论文作者
论文摘要
超导吨位的设计和制造技术的快速发展有助于使Qubits的连贯时间更长。然而,在不久的将来,量子的辐射衰减进入其控制线将是一个基本限制,在快速控制和量子的长寿命之间实现了权衡。在这项工作中,我们通过在控制线上强烈耦合另一个超导量子队,成功地打破了这一权衡。我们称之为约瑟夫森量子滤波器(JQF)的第二个量子量,可防止量子器发射微波光子,从而抑制其放松,同时由于量子滤光片的饱和而忠实地传播了大振幅控制微波脉冲,从而实现了快速Quittot的控制。我们观察到量子放松时间的改善,而不会降低兔子频率。该设备有可能有助于实现大规模超导量子信息处理器的加热和量子位之间的串扰。
The rapid development in designs and fabrication techniques of superconducting qubits has helped making coherence times of qubits longer. In the near future, however, the radiative decay of a qubit into its control line will be a fundamental limitation, imposing a trade-off between fast control and long lifetime of the qubit. In this work, we successfully break this trade-off by strongly coupling another superconducting qubit along the control line. This second qubit, which we call a Josephson quantum filter (JQF), prevents the qubit from emitting microwave photons and thus suppresses its relaxation, while faithfully transmitting large-amplitude control microwave pulses due to the saturation of the quantum filter, enabling fast qubit control. We observe an improvement of the qubit relaxation time without a reduction of the Rabi frequency. This device could potentially help in the realization of a large-scale superconducting quantum information processor in terms of the heating of the qubit environments and the crosstalk between qubits.