论文标题
Millikelvin温度冷冻-CMOS多路复用器用于可伸缩量子设备表征
Millikelvin temperature cryo-CMOS multiplexer for scalable quantum device characterisation
论文作者
论文摘要
近年来,基于固态的量子计算机一直是快速发展的主题。在当前噪声中间尺度量子(NISQ)技术中,每个量子设备都受到控制和表征,但通过稀释冰箱的室温和基础温度之间的专用信号线进行了表征。这种方法是不可扩展的,目前正在限制大规模量子系统集成和量子设备表征的开发。在这里,我们演示了一个定制设计的冷冻频道多路复用器,在32 mk处运行。多路复用器在房间和Millikelvin温度下具有高达10 GHz的出色微波特性。我们通过使用稀释冰箱中的单个输入和输出线来测量四个高质量因子超导谐振器,从而增加了多路复用器的表征吞吐量。我们的工作为大规模微波量子设备表征奠定了基础,并具有解决未来大型量子计算机的布线问题的观点。
Quantum computers based on solid state qubits have been a subject of rapid development in recent years. In current Noisy Intermediate-Scale Quantum (NISQ) technology, each quantum device is controlled and characterised though a dedicated signal line between room temperature and base temperature of a dilution refrigerator. This approach is not scalable and is currently limiting the development of large-scale quantum system integration and quantum device characterisation. Here we demonstrate a custom designed cryo-CMOS multiplexer operating at 32 mK. The multiplexer exhibits excellent microwave properties up to 10 GHz at room and millikelvin temperatures. We have increased the characterisation throughput with the multiplexer by measuring four high-quality factor superconducting resonators using a single input and output line in a dilution refrigerator. Our work lays the foundation for large-scale microwave quantum device characterisation and has the perspective to address the wiring problem of future large-scale quantum computers.