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An ESOP Based Cube Decomposition Technique for Reversible Circuits

机译:基于ESOP基于Reverible电路的多维数据集分解技术

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Reversible logic finds applications in emerging technologies such as quantum computing, optical computing, etc. This has motivated research into development of synthesis and optimization algorithms for reversible circuits. In this paper, a set of rules is presented for the decomposition of a pair of multi-control Toffoli gates (MCT) to reduce the quantum cost of reversible circuits. These rules find pairs of MCT gates, which when decomposed to a network of smaller gates, result in reduced quantum cost. This technique is used in conjunction with an Exclusive-OR Sum-Of-Product (ESOP) based reversible circuit synthesis algorithm to check its efficiency. Results indicate that there is a reduction in quantum cost of several benchmark circuits when compared to the known ESOP based synthesis algorithms.
机译:可逆逻辑在诸如量子计算,光学计算等中的新兴技术中找到了应用。这具有激励为可逆电路的合成和优化算法的开发的研究。在本文中,呈现了一组规则,用于分解一对多控制Toffoli门(MCT)以降低可逆电路的量子成本。这些规则查找成对的MCT栅极,当分解到较小门的网络时,导致量子成本降低。该技术与基于产品的可逆电路合成算法结合使用,以检查其效率。结果表明,与已知的ESOP的合成算法相比,几个基准电路的量子成本减小。

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