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Technique for two-dimensional nearest neighbour realisation of quantum circuits using weighted look-ahead

机译:使用加权展望的二维最近邻实现量子电路的技术

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Quantum computers that are based on technologies like superconducting and quantum dots impose a physical constraint that requires interacting qubits to be adjacent. The initial placement of qubits and the swap gate insertion techniques affect the circuit cost. The authors proposed a global qubit ordering technique that considers fewer permutations for the number of interactions a qubit does with other qubits of its circuit. They also performed the local re-ordering of qubits by attempting to reduce the cost as much as possible; the cost is estimated by defining a window with weights assigned in such a way that nearby gates to the current gate in question are given higher weightage. Experiments have been conducted on NCV benchmarks, and results have been compared with those of recent state-of-the-art techniques. When compared with the existing works, the proposed method shows improvements of up to 53.3% for smaller benchmarks and up to 51.61% for larger benchmarks.
机译:基于超导和量子点等技术的量子计算机施加了物理约束,该物理约束需要相邻的Qubits相邻。 Qubits的初始放置和交换栅极插入技术会影响电路成本。作者提出了一种全局QUBBit排序技术,其认为Qubit的交互次数较少的置换与其电路的其他QUBITS相同。他们还通过尝试尽可能降低成本来执行Qubits的本地重新订购;通过定义具有分配的权重的窗口来估计成本,该窗口以这样的方式分配给所讨论的当前大门的附近的栅极是更高的重量。在NCV基准测试中进行了实验,并将结果与​​最近的最先进技术进行了比较。与现有工程相比,该方法显示较小基准的提高高达53.3%,较大的基准最高可达51.61%。

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