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An Extended approach for Mapping Reversible Circuits to Quantum Circuits using NCV-|v1?library

机译:使用NCV- | v1库将可逆电路映射到量子电路的扩展方法

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In recent years, quantum computing has gained a lot of importance due to its property of increasing computational power exponentially. In the current literature, it has observed that the quantum computing has potential to solve many complex problems with less complexity based on the theoretical analysis. But in contrast to hardware implementation of quantum technology, it expands in a linear way. Moreover, there is a close relation between quantum computing and reversible computing. More precisely, quantum computing operations are reversible. In this paper, we propose an extended approach of mapping flow for describing reversible circuits to its equivalent quantum circuits. Here, we consider the reversible circuits of n-inputs and n-outputs with NCT and GT library, which is mapped to the quantum circuits with the NCV-|v1? library. Finally, we provide our experimental results in terms of quantum costs for mapping the reversible circuits to quantum circuits.
机译:近年来,量子计算由于其以指数形式增加计算能力的性质而变得非常重要。在当前的文献中,已经观察到基于理论分析,量子计算具有以较少的复杂性解决许多复杂问题的潜力。但是与量子技术的硬件实现相反,它以线性方式扩展。此外,量子计算与可逆计算之间存在密切的关系。更准确地说,量子计算操作是可逆的。在本文中,我们提出了一种扩展的映射流方法,用于描述可逆电路到其等效量子电路。在这里,我们考虑具有NCT和GT库的n输入和n输出的可逆电路,该可逆电路映射到具有NCV- | v1?的量子电路?图书馆。最后,我们提供了将可逆电路映射到量子电路的量子成本方面的实验结果。

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