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This paper investigates the fault-tolerant properties of fracton codes, specifically the checkerboard code, a novel topological state of matter. It calculates the optimal code capacity, finding it to be the highest among known 3D codes and nearly saturating the theoretical limit. This suggests fracton codes are highly resilient quantum memory and validates duality techniques for analyzing complex quantum error-correcting codes.
Reference

The optimal code capacity of the checkerboard code is $p_{th} \simeq 0.108(2)$, the highest among known three-dimensional codes.

Research#physics🔬 ResearchAnalyzed: Jan 4, 2026 09:25

The Use of Torsion in Supergravity Uplifts and Covariant Fractons

Published:Dec 18, 2025 04:37
1 min read
ArXiv

Analysis

This article likely explores advanced theoretical physics, specifically focusing on the role of torsion in supergravity models and its connection to covariant fractons. The subject matter is highly specialized and requires a strong background in theoretical physics and mathematics. The title suggests a focus on mathematical frameworks and their physical implications.

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    Reference