On Gate Complexity of Reversible Circuits Consisting of NOT, CNOT and 2-CNOT Gates

Abstract

The paper discusses the gate complexity of reversible circuits consisting of NOT, CNOT and 2-CNOT gates. The Shannon gate complexity function L(n, q) for a reversible circuit, implementing a Boolean transformation f Z2n Z2n, is defined as a function of n and the number of additional inputs q. The general lower bound L(n,q) ≥ 2n(n-2)32(n+q) - n3 for the gate complexity of a reversible circuit is proved. An upper bound L(n,0) ≤slant 3n2n+4(1+o(1)) / 2n for the gate complexity of a reversible circuit without additional inputs is proved. An upper bound L(n,q0) 2n for the gate complexity of a reversible circuit with q0 n2n-o(n) additional inputs is proved.

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