Quantum circuit synthesis using classes of GF(3) reversible fast spectral transforms

A. Al-Rabadi
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引用次数: 11

Abstract

Novel quantum circuit synthesis, using reversible Davio expansions, is introduced. The new method uses two planes to synthesize the quantum circuits: (1) a reversible butterfly circuit plane; and (2) a plane of quantum gates to perform additions and multiplications. Since the reduction of power consumption is a major requirement for circuit design of future technologies, such as in quantum circuits, the main features of several future technologies must include reversibility, and thus the new synthesis method, using reversible butterfly circuits, can play an important role in the synthesis of circuits that consume minimal power.
利用 GF(3) 可逆快速频谱变换类进行量子电路合成
介绍了一种利用可逆达维奥展开合成量子电路的新方法。新方法采用两个平面来合成量子电路:(1)可逆蝴蝶电路平面;(2)执行加法和乘法的量子门平面。由于降低功耗是未来技术(如量子电路)电路设计的主要要求,因此几种未来技术的主要特征必须包括可逆性,因此使用可逆蝴蝶电路的新合成方法可以在消耗最小功耗的电路合成中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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