QUANTUM LOGIC CIRCUIT DESIGN OF MANY-VALUED GALOIS REVERSIBLE EXPANSIONS AND FAST TRANSFORMS

Anas N. Al‐Rabadi · Journal of Circuits Systems and Computers · 2007

Many-valued quantum circuit synthesis of many-valued reversible expansions and fast transforms is introduced in this paper. Since the reduction of power consumption is a major requirement for the circuit design in future technologies, such as in quantum computing, the main features of several future technologies will include reversibility. Consequently, the new quantum circuits can play an important task in the design of future circuits that consume minimal power. In addition, the new quantum circuit methodology is general and can be used to realize any multiple-valued function in the quantum space. It is also shown that the structural generality advantage that results from the new design methodology is opposed with the increased quantum structural complexity disadvantage which may be considered in any further cost-benefit design analysis.

Read the paper · More papers on PaperTik