首页> 外文会议>Multiple-Valued Logic, 2009. ISMVL '09 >Quantum Realization of Multiple-Valued Feynman and Toffoli Gates without Ancilla Input
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Quantum Realization of Multiple-Valued Feynman and Toffoli Gates without Ancilla Input

机译:不带辅助输入的多值Feynman门和Toffoli门的量子实现

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Multiple-valued Feynman and Toffoli gates are used in GFSOP based synthesis of quantum logic circuits. These gates are macro-level gates and need to be realized using technology dependent primitive gates. In this paper, we present ancilla input free architectures for realization of d-valued (dges3 ) Feynman and n-qudit (nges3 ) Toffoli gates on the top of liquid ion-trap realizable Muthukrishnan-Stroud gates. The proposed architectures can be used for any d if GF(d) can be constructed. We show realization examples of ternary, quaternary, and quinary Feynman gates, and 3 and 4-qudit Toffoli gates. The present realizations require either less or equal primitive gates than the previously reported realizations. Moreover, in contrast to the earlier realizations, the present Toffoli gate realizations do not require any ancilla input, which reduce the register width of a synthesized quantum logic circuit.
机译:多值Feynman和Toffoli门用于基于GFSOP的量子逻辑电路综合。这些门是宏级门,需要使用与技术相关的原始门来实现。在本文中,我们介绍了在液体离子阱可实现的Muthukrishnan-Stroud门顶部实现d值(dges3)Feynman和n-qudit(nges3)Toffoli门的辅助输入自由体系结构。如果可以构造GF(d),则建议的体系结构可用于任何d。我们展示了三元,四元和五元Feynman门以及3和4数量的Toffoli门的实现示例。与先前报道的实现相比,本实现需要更少或相等的原始门。而且,与较早的实现相反,本发明的托菲利门实现不需要任何辅助输入,这减少了合成量子逻辑电路的寄存器宽度。

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