Nonstabilizerness and Error Resilience in Noisy Quantum Circuits

Fuente: arXiv
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Main Authors: Trigueros, Fabian Ballar, Guzmán, José Antonio Marín
Format: Preprint
Published: 2025
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author Trigueros, Fabian Ballar
Guzmán, José Antonio Marín
author_facet Trigueros, Fabian Ballar
Guzmán, José Antonio Marín
contents We investigate how noise impacts nonstabilizerness - a key resource for quantum advantage - in many-body qubit systems. While noise typically degrades quantum resources, we show that amplitude damping, a nonunital channel, can generate or enhance magic, whereas depolarizing noise provably cannot. In an encoding-decoding protocol, we find that, unlike in the coherent-noise case, a sharp decoding fidelity transition is not accompanied by a transition in nonstabilizerness. Although amplitude damping locally injects magic, this resource is washed out at the collective level after encoding, decoding, and postselection. Our results reveal that realistic incoherent noise can suppress many-body magic criticality even while generating it microscopically.
format Preprint
id arxiv_https___arxiv_org_abs_2506_18976
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nonstabilizerness and Error Resilience in Noisy Quantum Circuits
Trigueros, Fabian Ballar
Guzmán, José Antonio Marín
Quantum Physics
We investigate how noise impacts nonstabilizerness - a key resource for quantum advantage - in many-body qubit systems. While noise typically degrades quantum resources, we show that amplitude damping, a nonunital channel, can generate or enhance magic, whereas depolarizing noise provably cannot. In an encoding-decoding protocol, we find that, unlike in the coherent-noise case, a sharp decoding fidelity transition is not accompanied by a transition in nonstabilizerness. Although amplitude damping locally injects magic, this resource is washed out at the collective level after encoding, decoding, and postselection. Our results reveal that realistic incoherent noise can suppress many-body magic criticality even while generating it microscopically.
title Nonstabilizerness and Error Resilience in Noisy Quantum Circuits
topic Quantum Physics
url https://arxiv.org/abs/2506.18976