Title :
Elementary Quantum Gate Realizations for Multiple-Control Toffoli Gates
Author :
Miller, D. Michael ; Wille, Robert ; Sasanian, Z.
Author_Institution :
Dept. of Comput. Sci., Univ. of Victoria, Victoria, BC, Canada
Abstract :
A new method for determining elementary quantum gate realizations for multiple-control Toffoli (MCT) gates is presented. The realization for each MCT gate is formed as a composition of realizations of smaller MCT gates. A marking algorithm which is more effective than the traditional moving rule is used to optimize the final circuit. The main improvement is that the resulting circuits make significantly better use of ancillary lines than has been achieved in earlier approaches. Initial results are also presented for circuits with nearest-neighbour communication. These results show that the overall approach is not as effective for that problem indicating that research on direct synthesis of nearest-neighbour quantum circuits should be considered. While, the results presented are for the NCV quantum gate library (i.e. for quantum circuits composed of NOT gates, controlled-NOT gates, and controlled-V=V+ gates), the approach can be applied to other libraries of elementary quantum gates.
Keywords :
logic design; quantum gates; NCV quantum gate library; ancillary lines; circuit synthesis; elementary quantum gate realization; marking algorithm; multiple-control Toffoli gates; nearest-neighbour quantum circuits; Catalogs; Circuit synthesis; Equations; Labeling; Libraries; Logic gates; Quantum computing;
Conference_Titel :
Multiple-Valued Logic (ISMVL), 2011 41st IEEE International Symposium on
Conference_Location :
Tuusula
Print_ISBN :
978-1-4577-0112-2
Electronic_ISBN :
0195-623X
DOI :
10.1109/ISMVL.2011.54