CMOS芯片
量子位元
量子计算机
计算机科学
可扩展性
电子线路
超大规模集成
容错
电子工程
量子
电气工程
嵌入式系统
物理
工程类
分布式计算
量子力学
数据库
作者
Edoardo Charbon,Fabio Sebastiano,Andrei Vladimirescu,Harald Homulle,Stefan Visser,Song Lin,Rosario Incandela
标识
DOI:10.1109/iedm.2016.7838410
摘要
Cryogenic CMOS, or cryo-CMOS circuits and systems, are emerging in VLSI design for many applications, in primis quantum computing. Fault-tolerant quantum bits (qubits) in surface code configurations, one of the most accepted implementations in quantum computing, operate in deep sub-Kelvin regime and require scalable classical control circuits. In this paper we advocate the need for a new generation of deep-submicron CMOS circuits operating at deep-cryogenic temperatures to achieve the performance required in a fault-tolerant qubit system. We outline the challenges and limitations of operating CMOS in near-zero Kelvin regimes and we propose solutions. The paper concludes with several examples showing the suitability of integrating fault-tolerant.qubits with CMOS.
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