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On one-orbit cyclic subspace codes of $\mathcal{G}_q(n,3)$

Published 2 May 2024 in cs.IT, math.CO, and math.IT | (2405.01652v1)

Abstract: Subspace codes have recently been used for error correction in random network coding. In this work, we focus on one-orbit cyclic subspace codes. If $S$ is an $\mathbb{F}q$-subspace of $\mathbb{F}{qn}$, then the one-orbit cyclic subspace code defined by $S$ is [ \mathrm{Orb}(S)={\alpha S \colon \alpha \in \mathbb{F}{qn}*}, ]where $\alpha S=\lbrace \alpha s \colon s\in S\rbrace$ for any $\alpha\in \mathbb{F}{qn}*$. Few classification results of subspace codes are known, therefore it is quite natural to initiate a classification of cyclic subspace codes, especially in the light of the recent classification of the isometries for cyclic subspace codes. We consider three-dimensional one-orbit cyclic subspace codes, which are divided into three families: the first one containing only $\mathrm{Orb}(\mathbb{F}_{q3})$; the second one containing the optimum-distance codes; and the third one whose elements are codes with minimum distance $2$. We study inequivalent codes in the latter two families.

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