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Simulating Large Quantum Circuits on a Small Quantum Computer

机译:在小量子计算机上模拟大量电路

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摘要

Limited quantum memory is one of the most important constraints for near-term quantum devices. Understanding whether a small quantum computer can simulate a larger quantum system, or execute an algorithm requiring more qubits than available, is both of theoretical and practical importance. In this Letter, we introduce cluster parameters K and d of a quantum circuit. The tensor network of such a circuit can be decomposed into clusters of size at most d with at most K qubits of inter-cluster quantum communication. We propose a cluster simulation scheme that can simulate any (K, d)-clustered quantum circuit on a d-qubit machine in time roughly 2(O(K)), with further speedups possible when taking more fine-grained circuit structure into account. We show how our scheme can be used to simulate clustered quantum systems-such as large molecules-that can be partitioned into multiple significantly smaller clusters with weak interactions among them. By using a suitable clustered ansatz, we also experimentally demonstrate that a quantum variational eigensolver can still achieve the desired performance for estimating the energy of the BeH2 molecule while running on a physical quantum device with half the number of required qubits.
机译:有限量子存储器是近期量子器件最重要的约束之一。了解小量子计算机是否可以模拟较大的量子系统,或者执行需要更多贵族的算法而不是可用的算法,这都是理论和实践的重要性。在这封信中,我们引入量子电路的集群参数k和d。这种电路的张量网络可以以大多数D的大多数D分解成大多数群体群集额度量子通信的簇。我们提出了一种集群仿真方案,可以在大约2(O(k))上以时间为2(o(k))在D-Qubit机器上模拟任何(k,d)集合的量子电路,当考虑更细粒度的电路结构时,可以进一步加速。我们展示了我们的方案如何用于模拟聚类量子系统 - 例如大分子 - 可以将其分成多个明显更小的簇,其中相互作用弱。通过使用合适的聚类Ansatz,我们还通过实验证明量子变分Eigensolver仍然可以达到所需的性能,以估计BEP2分子的能量,同时在物理量子器件上运行所需Qubits的一半。

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  • 来源
    《Physical review letters》 |2020年第15期|150504.1-150504.6|共6页
  • 作者单位

    MIT Lab Informat & Decis Syst 77 Massachusetts Ave Cambridge MA 02139 USA;

    MIT Ctr Theoret Phys Cambridge MA 02139 USA;

    Univ Amsterdam NL-1098 XG Amsterdam Netherlands|QuSoft NL-1098 XG Amsterdam Netherlands;

    Univ Maryland Inst Adv Comp Studies Dept Comp Sci College Pk MD 20742 USA|Univ Maryland Joint Ctr Quantum Informat & Comp Sci College Pk MD 20742 USA;

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