A Microarchitecture for a Superconducting Quantum Processor.

IEEE Micro(2018)

Cited 32|Views85
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Abstract
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.
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Key words
Decoding,Quantum computing,Computer architecture,Digital control,Process control,Coprocessors,Pulse measurements,Microarchitecture
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