论文标题

在可编程的2000 Qubit Ising链中连贯的量子退火

Coherent quantum annealing in a programmable 2000-qubit Ising chain

论文作者

King, Andrew D., Suzuki, Sei, Raymond, Jack, Zucca, Alex, Lanting, Trevor, Altomare, Fabio, Berkley, Andrew J., Ejtemaee, Sara, Hoskinson, Emile, Huang, Shuiyuan, Ladizinsky, Eric, MacDonald, Allison, Marsden, Gaelen, Oh, Travis, Poulin-Lamarre, Gabriel, Reis, Mauricio, Rich, Chris, Sato, Yuki, Whittaker, Jed D., Yao, Jason, Harris, Richard, Lidar, Daniel A., Nishimori, Hidetoshi, Amin, Mohammad H.

论文摘要

量子模拟已成为一种有价值的领域,用于证明和了解近期量子计算机的功能。量子退火已成功地用于模拟一系列开放量子系统,无论是在平衡和均衡状态下。但是,在以前的所有实验中,由于环境的热效应开始,退火太慢而无法相干地模拟封闭的量子系统。在这里,我们通过在1D横向场链的范式设置中通过量子相变的量子相变演示了连贯的演变,在可编程量子退火器中最多使用2000个超导通量量子。在大型系统中,我们观察到具有理论上预测的扭结统计数据的量子千阵容机制,以及与系统温度无关的特征正相关相关性。在小链中,激发统计数据验证了最小间隙的Landau-Zener转变的图像。在这两种情况下,结果均与封闭系统量子模型的分析解决方案都符合定量一致。对于较慢的退火,我们观察到跨量子量量子状态的抗Kibble-Zurek缩放。这些实验表明,大规模量子退火器可以连贯地操作,为利用量子优化,机器学习和仿真任务中的一致动力学铺平了道路。

Quantum simulation has emerged as a valuable arena for demonstrating and understanding the capabilities of near-term quantum computers. Quantum annealing has been used successfully in simulating a range of open quantum systems, both at equilibrium and out of equilibrium. However, in all previous experiments, annealing has been too slow to simulate a closed quantum system coherently, due to the onset of thermal effects from the environment. Here we demonstrate coherent evolution through a quantum phase transition in the paradigmatic setting of the 1D transverse-field Ising chain, using up to 2000 superconducting flux qubits in a programmable quantum annealer. In large systems we observe the quantum Kibble-Zurek mechanism with theoretically predicted kink statistics, as well as characteristic positive kink-kink correlations, independent of system temperature. In small chains, excitation statistics validate the picture of a Landau-Zener transition at a minimum gap. In both cases, results are in quantitative agreement with analytical solutions to the closed-system quantum model. For slower anneals we observe anti-Kibble-Zurek scaling in a crossover to the open quantum regime. These experiments demonstrate that large-scale quantum annealers can be operated coherently, paving the way to exploiting coherent dynamics in quantum optimization, machine learning, and simulation tasks.

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