A complete characterization of plateaued Boolean functions in terms of their Cayley graphs

July 01, 2018 ยท The Ethereal ยท ๐Ÿ› International Conference on Cryptology in Africa

๐Ÿ”ฎ THE ETHEREAL: The Ethereal
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Authors Constanza Riera, Patrick Sole, Pantelimon Stanica arXiv ID 1807.00344 Category math.CO: Combinatorics Cross-listed cs.IT Citations 4 Venue International Conference on Cryptology in Africa Last Checked 1 month ago
Abstract
In this paper we find a complete characterization of plateaued Boolean functions in terms of the associated Cayley graphs. Precisely, we show that a Boolean function $f$ is $s$-plateaued (of weight $=2^{(n+s-2)/2}$) if and only if the associated Cayley graph is a complete bipartite graph between the support of $f$ and its complement (hence the graph is strongly regular of parameters $e=0,d=2^{(n+s-2)/2}$). Moreover, a Boolean function $f$ is $s$-plateaued (of weight $\neq 2^{(n+s-2)/2}$) if and only if the associated Cayley graph is strongly $3$-walk-regular (and also strongly $\ell$-walk-regular, for all odd $\ell\geq 3$) with some explicitly given parameters.
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