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Research PaperResearchia:202604.30070

Strict Hierarchy for Quantum Channel Certification to Unitary

Kean Chen

Abstract

We consider the problem of quantum channel certification to unitary, where one is given access to an unknown $d$-dimensional channel $\mathcal{E}$, and wants to test whether $\mathcal{E}$ is equal to a target unitary channel or is $\varepsilon$-far from it in the diamond norm. We present optimal quantum algorithms for this problem, settling the query complexities in three access models with increasing power. Specifically, we show that: (i) $Θ(d/\varepsilon^2)$ queries suffice for incoherent ac...

Submitted: April 30, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

We consider the problem of quantum channel certification to unitary, where one is given access to an unknown dd-dimensional channel E\mathcal{E}, and wants to test whether E\mathcal{E} is equal to a target unitary channel or is ε\varepsilon-far from it in the diamond norm. We present optimal quantum algorithms for this problem, settling the query complexities in three access models with increasing power. Specifically, we show that: (i) Θ(d/ε2)Θ(d/\varepsilon^2) queries suffice for incoherent access model, matching the lower bound due to Fawzi, Flammarion, Garivier, and Oufkir (COLT 2023). (ii) Θ(d/ε)Θ(d/\varepsilon) queries suffice for coherent access model, matching the lower bound due to Regev and Schiff (ICALP 2008). (iii) Θ(d/ε)Θ(\sqrt{d}/\varepsilon) queries suffice for source-code access model, matching the lower bound due to Jeon and Oh (npj Quantum Inf. 2026). This demonstrates a strict hierarchy of complexities for quantum channel certification to unitary across various access models.


Source: arXiv:2604.26900v1 - http://arxiv.org/abs/2604.26900v1 PDF: https://arxiv.org/pdf/2604.26900v1 Original Link: http://arxiv.org/abs/2604.26900v1

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Date:
Apr 30, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
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