arXiv · 2608.29631
Efficient Polynomial-Time Decoding of Simplicial Anticodes with Near-Optimal Performance
Abstract
In this work, we propose an efficient decoding algorithm for codes arising from simplicial complexes, a family of binary linear codes for which no decoding method of this type was previously known. Although the algorithm does not always attain the maximum theoretical error-correcting capability, it provides an explicit bound that can be computed directly from the structure of the complex. Moreover, this bound is asymptotically optimal: the ratio between the guaranteed correcting capability and the theoretical maximum converges to $1$ as the code length increases, under natural assumptions on the dimension of the maximal faces. The correction capability is also presented in specific examples. Finally, we introduce specific families of simplicial complexes where the algorithm successfully reaches this theoretical bound.
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Antonio Jesús Lorite-López, Daniel Camazón-Portela, Juan Antonio López-Ramos. 2026-08-30. Efficient Polynomial-Time Decoding of Simplicial Anticodes with Near-Optimal Performance. https://arxiv.org/abs/2608.29631
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