论文标题

基于穿梭的捕获量量子计算机的量子电路编译器

Quantum Circuit Compiler for a Shuttling-Based Trapped-Ion Quantum Computer

论文作者

Kreppel, Fabian, Melzer, Christian, Millán, Diego Olvera, Wagner, Janis, Hilder, Janine, Poschinger, Ulrich, Schmidt-Kaler, Ferdinand, Brinkmann, André

论文摘要

量子计算硬件的功能越来越多以及实现深量子电路的挑战需要完全自动化和有效的工具来编译量子电路。为了以一系列特定于量子计算机体系结构的本机门来表达任意电路,有必要使算法在量子硬件提供商的整个景观上进行算法。在这项工作中,我们提出了一个能够转换和优化针对基于穿梭的捕获离子量子处理器的量子电路的编译器。它由量子电路框架pytket上的自定义算法组成。评估了广泛的量子电路的性能,结果表明,与标准Pytket相比,与标准Qiskit汇编相比,栅极计数可通过最高5.1的因子降低,最高为2.2。

The increasing capabilities of quantum computing hardware and the challenge of realizing deep quantum circuits require fully automated and efficient tools for compiling quantum circuits. To express arbitrary circuits in a sequence of native gates specific to the quantum computer architecture, it is necessary to make algorithms portable across the landscape of quantum hardware providers. In this work, we present a compiler capable of transforming and optimizing a quantum circuit targeting a shuttling-based trapped-ion quantum processor. It consists of custom algorithms set on top of the quantum circuit framework Pytket. The performance was evaluated for a wide range of quantum circuits and the results show that the gate counts can be reduced by factors up to 5.1 compared to standard Pytket and up to 2.2 compared to standard Qiskit compilation.

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