Robust Error Accumulation Suppression for Quantum Circuits

Fuente: arXiv
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Main Authors: Odake, Tatsuki, Taranto, Philip, Yoshioka, Nobuyuki, Itoko, Toshinari, Sharma, Kunal, Mezzacapo, Antonio, Murao, Mio
Format: Preprint
Published: 2024
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author Odake, Tatsuki
Taranto, Philip
Yoshioka, Nobuyuki
Itoko, Toshinari
Sharma, Kunal
Mezzacapo, Antonio
Murao, Mio
author_facet Odake, Tatsuki
Taranto, Philip
Yoshioka, Nobuyuki
Itoko, Toshinari
Sharma, Kunal
Mezzacapo, Antonio
Murao, Mio
contents We present a \textit{robust error accumulation suppression} (\textbf{REAS}) technique to manage errors in quantum computers. Our method reduces the accumulation of errors in any quantum circuit composed of single- or two-qubit gates expressed as $e^{-i σθ}$ for Pauli operators $σ$ and $θ\in [0,π)$, which forms a universal gate set. For coherent errors -- which include gate overrotation and crosstalk -- we demonstrate a reduction of the error scaling in an $L$-depth circuit from $O(L)$ to $O(\sqrt{L})$. This asymptotic error suppression behavior can be proven in a regime where all gates -- including those constituting the error-suppressing protocol itself -- are noisy. Going beyond coherent errors, we derive the general form of decoherence noise that can be suppressed by REAS. Lastly, we experimentally demonstrate the effectiveness of our approach regarding realistic errors using 100-qubit circuits with up to 64 two-qubit gate layers on IBM Quantum processors.
format Preprint
id arxiv_https___arxiv_org_abs_2401_16884
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Robust Error Accumulation Suppression for Quantum Circuits
Odake, Tatsuki
Taranto, Philip
Yoshioka, Nobuyuki
Itoko, Toshinari
Sharma, Kunal
Mezzacapo, Antonio
Murao, Mio
Quantum Physics
We present a \textit{robust error accumulation suppression} (\textbf{REAS}) technique to manage errors in quantum computers. Our method reduces the accumulation of errors in any quantum circuit composed of single- or two-qubit gates expressed as $e^{-i σθ}$ for Pauli operators $σ$ and $θ\in [0,π)$, which forms a universal gate set. For coherent errors -- which include gate overrotation and crosstalk -- we demonstrate a reduction of the error scaling in an $L$-depth circuit from $O(L)$ to $O(\sqrt{L})$. This asymptotic error suppression behavior can be proven in a regime where all gates -- including those constituting the error-suppressing protocol itself -- are noisy. Going beyond coherent errors, we derive the general form of decoherence noise that can be suppressed by REAS. Lastly, we experimentally demonstrate the effectiveness of our approach regarding realistic errors using 100-qubit circuits with up to 64 two-qubit gate layers on IBM Quantum processors.
title Robust Error Accumulation Suppression for Quantum Circuits
topic Quantum Physics
url https://arxiv.org/abs/2401.16884