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Realization of a new permutative gate library using controlled-kth-root-of-NOT quantum gates for exact minimization of quantum circuits

机译:使用可控制的第k个NOT根量子门实现新的置换门库,以精确地最小化量子电路

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摘要

Since non-permutative quantum gates have more complex rules than permutative quantum gates, it is very hard to synthesize quantum logic circuits using non-permutative quantum gates, such as controlled-square-root-of-NOT gates (CV/CV+ gates). In the efficient synthesis algorithm, direct use of quantum non-permutative gates should be avoided. Rather, the key method is to use quantum gates to create new permutative quantum gates that then replace non-permutative quantum gates. This method assumes the library of quantum gate primitives are constructed so as to have the lowest possible quantum cost. In this paper, we first propose some new CV/CV+-like gates, i.e. controlled-kth-root-of-NOT gates where k = 2, 4, 8, . . ., and give all corresponding matrixes. Further, we also present a novel generic method to quickly and directly construct this new optimal quantum logic gate library using CNOT and these non-permutative quantum gates. Our method introduces new means to find permutative quantum gates with lower quantum cost.
机译:由于非置换量子门比置换量子门具有更复杂的规则,因此很难使用非置换量子门来合成量子逻辑电路,例如非受控平方根NOT门(CV / CV +门)。在有效的合成算法中,应避免直接使用量子非置换门。相反,关键方法是使用量子门来创建新的置换量子门,然后替换非置换量子门。该方法假定构造了量子门基元库,以便具有最低的量子成本。在本文中,我们首先提出一些新的类似于CV / CV +的门,即k = 2,4,8,...的受控kth-root-of-NOT门。 。 ,并给出所有对应的矩阵。此外,我们还提出了一种新颖的通用方法,可以使用CNOT和这些非置换量子门快速而直接地构建此新的最佳量子逻辑门库。我们的方法引入了新的方法来寻找具有较低量子成本的置换量子门。

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