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On two-to-one mappings over finite fields

IEEE Transactions on Information Theory (IEEE Trans. Inf. Theory), 2019
Abstract

Two-to-one (22-to-11) mappings over finite fields play an important role in symmetric cryptography. In particular they allow to design APN functions, bent functions and semi-bent functions. In this paper we provide a systematic study of two-to-one mappings that are defined over finite fields. We characterize such mappings by means of the Walsh transforms. We also present several constructions, including an AGW-like criterion, constructions with the form of xrh(x(q1)/d)x^rh(x^{(q-1)/d}), those from permutation polynomials, from linear translators and from APN functions. Then we present 22-to-11 polynomial mappings in classical classes of polynomials: linearized polynomials and monomials, low degree polynomials, Dickson polynomials and Muller-Cohen-Matthews polynomials, etc. Lastly, we show applications of 22-to-11 mappings over finite fields for constructions of bent Boolean and vectorial bent functions, semi-bent functions, planar functions and permutation polynomials. In all those respects, we shall review what is known and provide several new results.

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