Design of Ancilla Invariant and Quantum Cost efficient reversible arithmetic components
H. V. Jayashree, V.K. Agrawal · 2017
Reversible computing is an emerging field of research and has made remarkable progress. Owing to the reduced energy dissipation in reversible circuits, a lot of research has been done on the design of reversible circuits. In reversible logic circuit designs, along with primary inputs, few constant inputs (Ancilla Inputs) are used to realize required reversible functions. In addition to this, few unused or extra output bits are generated; these bits are named as Garbage Output bits. A challenge in the reversible computation is to use minimum Ancilla Inputs and generate zero Garbage Outputs. In this work, we present designs for addition, subtraction, and addition or subtraction operations. The designs are primarily optimized to achieve zero Garbage Outputs and minimum Ancilla Inputs. In addition, these proposed arithmetic circuits are designed for best Gate Count and Quantum Cost values compared to the existing counterparts.