论文标题
二维Hubbard-Holstein模型中的条纹相关性
Stripe correlations in the two-dimensional Hubbard-Holstein model
论文作者
论文摘要
几种最先进的数值方法已经观察到掺杂的二维Hubbard模型中的静态或波动的自旋和电荷条纹,这表明这些顺序在塑造丘比特相图中起着重要作用。然而,许多实验也表明丘比特具有强大的电子波($ e $ -ph)耦合,尚不清楚这种相互作用如何影响条纹的相关性。我们使用零温度变化的蒙特卡洛和有限的温度量子量子蒙特卡洛研究了掺杂的单带哈尔斯坦模型中的静态和波动条纹顺序。我们发现,晶格夫妻与条纹的电荷成分更加强烈,从而增强或抑制条纹相关性,具体取决于诸如下一个最新的neighbor跳跃$ t^\ prime $或Phonon Energy $ $ $ω$之类的模型参数。我们的结果有助于阐明$ e $ ph的相互作用如何在哈伯德 - 霍尔斯坦模型中的条纹和超导相关性之间的微妙平衡点上,这对我们对高$ t_ \ $ t_ \ mathrm {c} $ cuprates的理解产生了影响。
Several state-of-the-art numerical methods have observed static or fluctuating spin and charge stripes in doped two-dimensional Hubbard models, suggesting that these orders play a significant role in shaping the cuprate phase diagram. Many experiments, however, also indicate that the cuprates have strong electron-phonon ($e$-ph) coupling, and it is unclear how this interaction influences stripe correlations. We study static and fluctuating stripe orders in the doped singleband Hubbard-Holstein model using zero temperature variational Monte Carlo and finite temperature determinant quantum Monte Carlo. We find that the lattice couples more strongly with the charge component of the stripes, leading to an enhancement or suppression of stripe correlations, depending on model parameters like the next-nearest-neighbor hopping $t^\prime$ or phonon energy $Ω$. Our results help elucidate how the $e$-ph interaction can tip the delicate balance between stripe and superconducting correlations in the Hubbard-Holstein model with implications for our understanding of the high-$T_\mathrm{c}$ cuprates.