论文标题

5000 Qubitable可编程自旋玻璃中的量子关键动力学

Quantum critical dynamics in a 5000-qubit programmable spin glass

论文作者

King, Andrew D., Raymond, Jack, Lanting, Trevor, Harris, Richard, Zucca, Alex, Altomare, Fabio, Berkley, Andrew J., Boothby, Kelly, Ejtemaee, Sara, Enderud, Colin, Hoskinson, Emile, Huang, Shuiyuan, Ladizinsky, Eric, MacDonald, Allison J. R., Marsden, Gaelen, Molavi, Reza, Oh, Travis, Poulin-Lamarre, Gabriel, Reis, Mauricio, Rich, Chris, Sato, Yuki, Tsai, Nicholas, Volkmann, Mark, Whittaker, Jed D., Yao, Jason, Sandvik, Anders W., Amin, Mohammad H.

论文摘要

对无序合金的实验表明,与传统的热退火相比,通过退火量子波动可以使旋转玻璃更快地进入低能状态。由于自旋玻璃作为范式计算测试床的重要性,因此在可编程系统中重现这种现象一直是量子优化的核心挑战。在这里,我们通过用超导量子退火器在数千吨位上实现量子临界旋转玻璃动力学来实现这一目标。我们首先证明了小型自旋玻璃中schrödinger方程的量子退火与时间进化之间的定量一致性。然后,我们在数千吨位上测量3D自旋玻璃中的动力学,其中多体量子动力学的模拟是棘手的。我们提取关键指数,这些指数清楚地区分了量子退火与类似蒙特卡洛算法的随机动力学较慢,从而提供了理论和实验支持,以减少能量作为退火时间的函数的缩放优势。

Experiments on disordered alloys suggest that spin glasses can be brought into low-energy states faster by annealing quantum fluctuations than by conventional thermal annealing. Due to the importance of spin glasses as a paradigmatic computational testbed, reproducing this phenomenon in a programmable system has remained a central challenge in quantum optimization. Here we achieve this goal by realizing quantum critical spin-glass dynamics on thousands of qubits with a superconducting quantum annealer. We first demonstrate quantitative agreement between quantum annealing and time-evolution of the Schrödinger equation in small spin glasses. We then measure dynamics in 3D spin glasses on thousands of qubits, where simulation of many-body quantum dynamics is intractable. We extract critical exponents that clearly distinguish quantum annealing from the slower stochastic dynamics of analogous Monte Carlo algorithms, providing both theoretical and experimental support for a scaling advantage in reducing energy as a function of annealing time.

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