论文标题
通过量子kibble-zurek机制探测远程横向田间ISING模型的临界行为
Probing critical behavior of long-range transverse-field Ising model through quantum Kibble-Zurek mechanism
论文作者
论文摘要
被困的离子量子模拟器已显示出多达数十个离子的不同物理模型的定性特性。特别是,线性离子链自然地在激光驾驶下构成了远程ISINES相互作用,该驱动器已用于各种现象,例如量子相变,定位,热化和信息传播。对于近期实际用法,一项核心任务是找到嘈杂的量子模拟器的更多定量应用,这些模拟器对参数中的小误差很强。在这里,我们报告了使用多达61个离子的远距离横向局部模型的量子模拟,并通过kibble-zurek机制探测其量子相变的临界行为。通过校准和验证耦合系数,我们实现了增加离子数的相同模型,以便提取不含有限尺寸效应的关键指数。对于铁磁相互作用,我们的实验结果与先前的数值预测非常吻合。至于抗铁磁案例,由于互动的挫败感,信号太弱,无法适应关键指数,但仍与理论一致。
The trapped ion quantum simulator has demonstrated qualitative properties of different physical models for up to tens of ions. In particular, a linear ion chain naturally hosts long-range Ising interactions under the laser driving, which has been used for various phenomena such as quantum phase transition, localization, thermalization and information propagation. For near-term practical usage, a central task is to find more quantitative applications of the noisy quantum simulators that are robust to small errors in the parameters. Here we report the quantum simulation of a long-range transverse-field Ising model using up to 61 ions and probe the critical behavior of its quantum phase transition through the Kibble-Zurek mechanism. By calibrating and verifying the coupling coefficients, we realize the same model for increasing ion numbers, so as to extract a critical exponent free of the finite size effect. For ferromagnetic interaction, our experimental result agrees well with the previous numerical predictions. As for the anti-ferromagnetic case, signals are too weak to fit a critical exponent due to the frustration in the interaction, but still consistent with the theory.