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Transversal non-Clifford gates on almost-good quantum LDP...
[Submitted on 2 Apr 2026 (v1), last revised 2 Jul 2026 (this ver · 2026-04-02 · via math updates on arXiv.org

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Abstract:We exhibit nontrivial transversal logical multi-controlled-$Z$ gates on $[\![N,\Theta(N),\tilde\Theta(N)]\!]$ quantum low-density parity-check (qLDPC) codes with soundness $\tilde\Theta(1)$, combining nearly optimal code parameters with fault-tolerant non-Clifford gates on qLDPC and quantum locally testable codes for the first time. Remarkably, our proofs proceed through highly general algebraic arguments. Building on insights from [Li et al.,~arXiv:2603.25831], we develop a general covering space framework for constructing and computing a rich family of cohomological invariant forms on sheaf codes that induce transversal logical multi-controlled-$Z$. To certify their nontriviality, we further demonstrate the existence of two-way product-expanding punctured Reed--Solomon codes, which is striking in light of the many negative examples for the product expansion behavior of ordinary Reed--Solomon codes. This approach directly overcomes the previous obstruction to realizing nontrivial logical operations while simultaneously preserving the code parameters. The claimed almost-good code results follow immediately as examples.

Submission history

From: Zimu Li [view email]
[v1] Thu, 2 Apr 2026 10:30:00 UTC (59 KB)
[v2] Thu, 2 Jul 2026 17:00:07 UTC (261 KB)