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Exact Synthesis of Nearest Neighbor Compliant Quantum Circuits in 2-D Architecture and Its Application to Large-Scale Circuits

机译:2-D体系结构中最近邻符合量子电路的精确合成及其在大型电路中的应用

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In this paper, we propose an exact method of directly synthesizing a nearest neighbor compliant (NNC) quantum circuit with the smallest depth in 2-D architecture, given a reversible function. Our method maps the synthesis problem to a Boolean satisfiability (SAT) problem and uses a satisfiability modulo theories (SMT) solver to find an assignment of a network of allowed quantum gates. Since an SMT solver performs an exhaustive search, it can be ensured that on a specific qubit placement, the NNC quantum circuit synthesized by our method has the smallest number of quantum gates. However, the exhaustive search also makes our exact method not scale well. For that reason, we propose another method of applying our exact method in the local synthesis of large-scale circuits, to in parallel synthesize sub-NNC quantum circuits. From the experimental results, the quantum costs of the NNC quantum circuits synthesized by our methods are reduced by an average of 23.89%, when compared to an optimal heuristic method which determines the smallest number of SWAP gates in 2-D architecture.
机译:在本文中,提供了一种精确的方法,即直接合成最近邻居(NNC)量子电路,在2-D架构中具有最小的深度,给定可逆函数。我们的方法将综合问题映射到布尔满足性(SAT)问题,并使用可满足的模数理论(SMT)求解器来查找允许量子门网络的分配。由于SMT求解器执行详尽的搜索,因此可以确保在特定的QUBBit放置上,由我们的方法合成的NNC量子电路具有最小数量的量子门。但是,详尽的搜索也使我们的精确方法不符号。因此,我们提出了另一种方法,可以在局部合成大规模电路的局部合成中应用了另一种方法,以并行合成子NNC量子电路。从实验结果中,与我们的方法合成的NNC量子电路的量子成本平均降低了23.89%,当与最佳启发式方法相比,该方法决定了2-D架构中最小数量的交换栅极。

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