A Microarchitecture for a Superconducting Quantum Processor

A Microarchitecture for a Superconducting Quantum Processor
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DOI:
10.1109/mm.2018.032271060
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发表时间:
2018-05
期刊:
影响因子:
3.6
通讯作者:
Xiang Fu;M. A. Rol;C. C. Bultink-C.;J. V. Someren;N. Khammassi;I. Ashraf;R. Vermeulen;J. C. D. Sterke;W. Vlothuizen;R. Schouten;C. G. Almudever;L. DiCarlo;K. Bertels
Xiang Fu;M. A. Rol;C. C. Bultink-C.;J. V. Someren;N. Khammassi;I. Ashraf;R. Vermeulen;J. C. D. Sterke;W. Vlothuizen;R. Schouten;C. G. Almudever;L. DiCarlo;K. Bertels
中科院分区:
计算机科学3区
文献类型:
--
作者:
Xiang Fu;M. A. Rol;C. C. Bultink-C.;J. V. Someren;N. Khammassi;I. Ashraf;R. Vermeulen;J. C. D. Sterke;W. Vlothuizen;R. Schouten;C. G. Almudever;L. DiCarlo;K. Bertels

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本文提出了一种量子微体系结构--量子微体系结构。量子处理器的灵活可编程性是通过多级指令解码,将模拟控制抽象为数字控制,并将具有不确定时序的指令执行转换为具有精确时序的事件触发器来实现的。通过对超导量子比特的几个单量子比特实验,验证了量子MA的有效性。
This article proposes a quantum microarchitecture, QuMA. Flexible programmability of a quantum processor is achieved by multilevel instructions decoding, abstracting analog control into digital control, and translating instruction execution with non-deterministic timing into event trigger with precise timing. QuMA is validated by several single-qubit experiments on a superconducting qubit.