English

Improved AntiGriesmer Bounds for Linear Anticodes and Applications

Information Theory 2025-11-05 v1 math.IT

Abstract

This paper improves the antiGriesmer bound for linear anticodes previously established by Chen and Xie (Journal of Algebra, 673 (2025) 304-320). While the original bound required the code length to satisfy n<qk1n < q^{k-1} and the dual code to have minimum distance at least 3, our main result removes the length restriction and relaxes the dual distance condition to at least 2. Specifically, we prove that for any [n,k]q[n,k]_q linear anticode C\mathcal{C} over Fq\mathbb{F}_q with diameter δ\delta and d(C)2d(\mathcal{C}^\perp) \geq 2, the inequality ni=0k1δqi n \leq \sum_{i=0}^{k-1} \left\lfloor \frac{\delta}{q^i} \right\rfloor holds. This generalization significantly broadens the applicability of the antiGriesmer bound. We derive several corollaries, including lower bounds on the diameter δ\delta in terms of nn and kk, upper bounds on the code length nn, and constraints on the dimension kk. Applications to the construction and classification of linear codes with few weights are also discussed, along with examples demonstrating that our new bound can be sharper than previous ones. Our work unifies and extends earlier findings, providing a more comprehensive framework for studying linear anticodes and their properties.

Keywords

Cite

@article{arxiv.2511.02519,
  title  = {Improved AntiGriesmer Bounds for Linear Anticodes and Applications},
  author = {Guanghui Zhang and Bocong Chen and Liren Lin and Hongwei Liu},
  journal= {arXiv preprint arXiv:2511.02519},
  year   = {2025}
}
R2 v1 2026-07-01T07:21:06.650Z