Bardin Joseph C, Slichter Daniel H, Reilly David J
Department of Electrical and Computer Engineering, University of Massachusetts Amherst, Amherst, MA 01003 USA.
Google LLC, Goleta, CA 93117 USA.
IEEE J Microw. 2021 Winter;1(1). doi: 10.1109/JMW.2020.3034071.
Quantum information processing systems rely on a broad range of microwave technologies and have spurred development of microwave devices and methods in new operating regimes. Here we review the use of microwave signals and systems in quantum computing, with specific reference to three leading quantum computing platforms: trapped atomic ion qubits, spin qubits in semiconductors, and superconducting qubits. We highlight some key results and progress in quantum computing achieved through the use of microwave systems, and discuss how quantum computing applications have pushed the frontiers of microwave technology in some areas. We also describe open microwave engineering challenges for the construction of large-scale, fault-tolerant quantum computers.
量子信息处理系统依赖于广泛的微波技术,并推动了新工作模式下微波器件和方法的发展。在这里,我们回顾微波信号和系统在量子计算中的应用,特别提及三个领先的量子计算平台:囚禁原子离子量子比特、半导体中的自旋量子比特和超导量子比特。我们重点介绍通过使用微波系统在量子计算中取得的一些关键成果和进展,并讨论量子计算应用如何在某些领域推动了微波技术的前沿发展。我们还描述了构建大规模、容错量子计算机所面临的微波工程开放性挑战。