论文标题

IBM量子计算机上电子波动力学的重新编译增强模拟

Recompilation-enhanced simulation of electron-phonon dynamics on IBM Quantum computers

论文作者

Jaderberg, Ben, Eisfeld, Alexander, Jaksch, Dieter, Mostame, Sarah

论文摘要

据信模拟量子系统是量子计算机可能证明有用优势的第一个应用之一。对于物理学中的许多问题,我们有兴趣研究Electron-Phonon Hamiltonian的演变,为此,存在有效的数字量子计算方案。然而,迄今为止,在实际量子硬件上尚未对该系统进行准确的模拟。在这项工作中,我们考虑了基于门的小电子系统基于门基的量子模拟的绝对资源成本,如猪动力学收敛所必需的猪肉步骤和玻色子能量水平所决定的。然后,我们将这些发现应用于对IBM量子硬件进行实验,以供弱和强的phonon耦合。尽管设备噪声很大,但通过使用近似电路的重新编译,我们在当前量子计算机上获得了与精确对角线化相当的电子量子动力学。我们的结果是利用近期量子计算机模拟量子动力学的重要一步,并突出了近似电路重新编译的新颖性,作为减少噪声的工具。

Simulating quantum systems is believed to be one of the first applications for which quantum computers may demonstrate a useful advantage. For many problems in physics, we are interested in studying the evolution of the electron-phonon Hamiltonian, for which efficient digital quantum computing schemes exist. Yet to date, no accurate simulation of this system has been produced on real quantum hardware. In this work, we consider the absolute resource cost for gate-based quantum simulation of small electron-phonon systems as dictated by the number of Trotter steps and bosonic energy levels necessary for the convergence of dynamics. We then apply these findings to perform experiments on IBM quantum hardware for both weak and strong electron-phonon coupling. Despite significant device noise, through the use of approximate circuit recompilation we obtain electron-phonon dynamics on current quantum computers comparable to exact diagonalisation. Our results represent a significant step in utilising near term quantum computers for simulation of quantum dynamics and highlight the novelty of approximate circuit recompilation as a tool for reducing noise.

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