量子位元
量子计算机
CMOS芯片
计算机科学
电子线路
电气工程
电子工程
数码产品
噪音(视频)
量子
物理
工程类
量子力学
图像(数学)
人工智能
作者
Bishnu Patra,Rosario Incandela,Jeroen P. G. van Dijk,Harald Homulle,Song Lin,Mina Shahmohammadi,Robert Bogdan Staszewski,Andrei Vladimirescu,Masoud Babaie,Fabio Sebastiano,Edoardo Charbon
出处
期刊:IEEE Journal of Solid-state Circuits
[Institute of Electrical and Electronics Engineers]
日期:2017-09-13
卷期号:53 (1): 309-321
被引量:371
标识
DOI:10.1109/jssc.2017.2737549
摘要
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very precise control electronics for the manipulation and readout of individual qubits. CMOS operating at cryogenic temperatures down to 4 K (cryo-CMOS) allows for closer system integration, thus promising a scalable solution to enable future quantum computers. In this paper, a cryogenic control system is proposed, along with the required specifications, for the interface of the classical electronics with the quantum processor. To prove the advantages of such a system, the functionality of key circuit blocks is experimentally demonstrated. The characteristic properties of cryo-CMOS are exploited to design a noise-canceling low-noise amplifier for spin-qubit RF-reflectometry readout and a class-F 2,3 digitally controlled oscillator required to manipulate the state of qubits.
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