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      Efficient arithmetic on elliptic curves in characteristic 2

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          Abstract

          We present normal forms for elliptic curves over a field of characteristic \(2\) analogous to Edwards normal form, and determine bases of addition laws, which provide strikingly simple expressions for the group law. We deduce efficient algorithms for point addition and scalar multiplication on these forms. The resulting algorithms apply to any elliptic curve over a field of characteristic \(2\) with a \(4\)-torsion point, via an isomorphism with one of the normal forms. We deduce algorithms for duplication in time \(2M + 5S + 2m_c\) and for addition of points in time \(7M + 2S\), where \(M\) is the cost of multiplication, \(S\) the cost of squaring, and \(m_c\) the cost of multiplication by a constant. By a study of the Kummer curves \(\mathcal{K} = E/\{[\pm1]\}\), we develop an algorithm for scalar multiplication with point recovery which computes the multiple of a point \(P\) with \(4M + 4S + 2m_c + m_t\) per bit where \(m_t\) is multiplication by a constant that depends on \(P\).

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          Resistance Against Differential Power Analysis For Elliptic Curve Cryptosystems

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            A normal form for elliptic curves

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              Twisted Edwards Curves

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                Author and article information

                Journal
                1601.03669

                Number theory
                Number theory

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