论文标题
蜂窝状晶格中的磁性和充电顺序
Magnetism and charge order in the honeycomb lattice
论文作者
论文摘要
尽管与更好地理解类似蜂窝状系统的特性相关,但作为基于石墨烯的化合物,通常在理论方法中忽略了电子 - phonon相互作用。也就是说,声子字段对\ textIt {互动}狄拉克电子的影响是一个开放的问题,尤其是在研究长期顺序时。因此,在这里,我们进行了公正的量子蒙特卡洛模拟,以检查半填充的蜂窝晶格中的Hubbard-Holstein模型(HHM)。通过执行仔细的有限尺寸缩放分析,我们确定了半学到绝缘子量子临界点,并确定抗铁磁和电荷密度波相变的行为。因此,我们已经为中间相互作用强度建立了HHM的基态相图,从而确定了其对不同声子频率的行为。我们的发现代表了模型的完整描述,并可能阐明了类似蜂窝状系统中多体性能的出现。
Despite being relevant to better understand the properties of honeycomb-like systems, as graphene-based compounds, the electron-phonon interaction is commonly disregarded in theoretical approaches. That is, the effects of phonon fields on \textit{interacting} Dirac electrons is an open issue, in particular when investigating long-range ordering. Thus, here we perform unbiased quantum Monte Carlo simulations to examine the Hubbard-Holstein model (HHM) in the half-filled honeycomb lattice. By performing careful finite-size scaling analysis, we identify semimetal-to-insulator quantum critical points, and determine the behavior of the antiferromagnetic and charge-density wave phase transitions. We have, therefore, established the ground state phase diagram of the HHM for intermediate interaction strength, determining its behavior for different phonon frequencies. Our findings represent a complete description of the model, and may shed light on the emergence of many-body properties in honeycomb-like systems.