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APS -APS March Meeting 2017 - Event - Universal qubit stabilization with parametric tunable qubit-cavity interaction

机译:APS -APS 2017年3月会议-活动-具有参数可调量子位-腔相互作用的通用量子位稳定

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Quantum state stabilization provides a promising path to preserving coherence for quantum systems which is crucial to quantum information science. In this talk, we propose a parametric scheme for stabilizing arbitrary single qubit state with a new type of tunable coupler circuit, where the coupling strength between a transmon qubit and a lumped-element resonator is mediated by a superconducting interference device (SQuID). We show that with this device, the static coupling strength can be tuned from less than 15 MHz to more than 250 MHz by tuning the dc flux that threads into the SQuID loop, while a sideband rate of more than 100MHz can be achieved through ac flux tones at the detuning or the summation of the qubit and cavity frequencies. We demonstrate how the universal qubit stabilization scheme is experimentally realized by a proper selection of difference flux tones and voltage drives.
机译:量子态稳定为保留量子系统的相干性提供了一条有希望的途径,这对于量子信息科学至关重要。在本次演讲中,我们提出了一种使用新型可调谐耦合器电路来稳定任意单量子位状态的参数方案,其中超导干扰器件(SQuID)调节跨极量子位和集总元件谐振器之间的耦合强度。我们表明,使用该器件,通过调整穿入SQuID环路的直流通量,可以将静态耦合强度从小于15 MHz调节到大于250 MHz,而通过交流通量可以实现超过100MHz的边带速率在去谐或基比特和腔频率的总和时发出音调。我们演示了如何通用量子比特稳定方案通过实验的差异通量色调和电压驱动一个适当的选择来实现。

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