Composite Matrices from Group Rings, Composite G-Codes and Constructions of Self-Dual Codes
February 26, 2020 Β· Declared Dead Β· π Designs, Codes and Cryptography
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Authors
Steven T. Dougherty, Joe Gildea, Adrian Korban, Abidin Kaya
arXiv ID
2002.11614
Category
cs.IT: Information Theory
Citations
12
Venue
Designs, Codes and Cryptography
Last Checked
4 months ago
Abstract
In this work, we define composite matrices which are derived from group rings. We extend the idea of G-codes to composite G-codes. We show that these codes are ideals in a group ring, where the ring is a finite commutative Frobenius ring and G is an arbitrary finite group. We prove that the dual of a composite G-code is also a composite G-code. We define quasi-composite G-codes and give a construction of these codes. We also study generator matrices, which consist of the identity matrices and the composite matrices. Together with the generator matrices, the well known extension method, the neighbour method and its generalization, we find extremal binary self-dual codes of length 68 with new weight enumerators for the rare parameters gamma=7,8 and 9. In particular, we find 49 new such codes. Moreover, we show that the codes we find are inaccessible from other constructions.
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