Reversible Adder Circuits (RAC) realization using Quantum Technologies
S S Kavitha, Narasimha Kaulgud · 2022 IEEE 2nd Mysore Sub Section International Conference (MysuruCon) · 2022
Quantum Computing is an emerging technology that offers significant advantages over classical computation with regard to speed, circuit density and heat dissipation. These future computers employs the reversibility property to make the computations faster. In contrast to conventional computers, quantum computers can restore the input bits uniquely after the logic block is evaluated, as input and output bits exhibits one-to-one correlation. To make the best use of this technology with existing limitations ,this paper focuses on building quantum adder circuits with less gate-count using IBM Qiskit. The Qiskit output should be analogous to the conventional output. Also to analyze the working of quantum circuits in layout structure, "Quantum Dot Cellular Automata(QCA)" technology is employed. In this approach, the reversible adder design is executed using the QCA designer tool with efficient formulation and novel arrangement of QCA cells. The proposed design has better complexity than other previous works with a declined number of gate-count, cell-count, delay and area.