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ISSCC 2021Session 13 · CYRO-CMOS FOR QUANTUM COMPUTINGQuantum & PhotonicsIntel FinFET

A Fully Integrated Cryo-CMOS SoC for Qubit Control in

⚡ 本页包含 AI 生成的分析内容,仅供参考

📋 论文概要

本文提出了一款全集成低温CMOS片上系统(SoC),用于量子比特的状态操控和读取。芯片基于Intel FinFET工艺,集成了量子比特控制所需的全部功能,解决了低温环境下高性能与低功耗的挑战。

💡 主要创新点

工艺节点
Intel FinFET
重要性
发表年份
ISSCC 2021

🏷 关键词

低温CMOS量子比特控制SoCFinFET

📄 原文摘要

FFL FinFET Technology Jong-Seok Park1, Sushil Subramanian1, Lester Lampert1, Todor Mladenov1, Ilya Klotchkov1, Dileep J. Kurian2, Esdras Juarez-Hernandez3, Brando Perez-Esparza3, Sirisha Rani Kale1, Asma Beevi K. T. 4, Shavindra Premaratne1, Thomas Watson1, Satoshi Suzuki1, Mustafijur Rahman1, Jaykant B. Timbadiya2, Saksham Soni2, Stefano Pellerano1 Intel, Hillsboro, OR Intel, Bangalore, India 3 Intel, Guadalajara, Mexico 4 Intel, Santa Clara, CA 1 2 Quantum computing promises exponential speed-up in solving certain complex problems that would be intractable by classical computers. However, thousands or millions of qubits might be required to solve useful problems. High-precision and lownoise electrical signals are required to manipulate and read the state of a qubit and to control qubit-to-qubit interactions. Current systems use room temperature electronics with many coax cables routed to the qubit chip inside a dilution refrigerator. This

👥 作者与机构

Quantum Computers Capable of State Manipulation, Readout

and High-Speed Gate Pulsing of Spin Qubits in Intel 22nm

分类:Quantum & Photonics · 年份:ISSCC 2021