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Concepts and conditions for error suppression through randomized compiling

Authors :
Winick, Adam
Wallman, Joel J.
Dahlen, Dar
Hincks, Ian
Ospadov, Egor
Emerson, Joseph
Publication Year :
2022

Abstract

Randomized compiling reduces the effects of errors on quantum computers by tailoring arbitrary Markovian errors into stochastic Pauli noise. Here we prove that randomized compiling also tailors non-Markovian errors into local stochastic Pauli noise and investigate the technique's limitations. We show through analysis and numerical results that randomized compiling alters errors in three distinct helpful ways. First, it prevents the coherent accumulation of errors (including hard to remove crosstalk effects) across gate cycles by destroying intercycle coherent correlations. Second, it converts individual gate cycle errors into Pauli noise. Finally, randomized compiling reduces the variability inherent to noisy devices. We confirm these theoretical predictions with the IBM Quantum Experience platform and describe experimental data that illustrates a drastic performance improvement across public devices. These results cement the importance of randomized compiling in near- and long-term quantum information processing.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....ecfd2484dca8b6621cf23129bba199af