论文标题
静态结构因子峰值的电线宽度和密度依赖性从$ 2K_ \ text {f} $ $ \ rightarrow $ $ $ $ $ 4K_ \ text {f} $一维pragragnetic电子气体
Wire width and density dependence of the crossover in the peak of the static structure factor from $2k_\text{F}$ $\rightarrow$ $4k_\text{F}$ in one-dimensional paramagnetic electron gases
论文作者
论文摘要
我们使用变异量子蒙特卡洛(VMC)方法来研究线宽度($ b $)和电子密度($ r_ \ text {s} $)的依赖性准二维顺磁性电子流体的地面特性。已知准晶格晶体的发作取决于电子密度,并且分频器发生在低密度状态下。我们研究了电线宽度对静态结构因子主要峰的交叉的影响,从$ k = 2k_ \ text {f} $到$ k = 4k_ \ text {f} $。发现对于固定的电子密度,在电荷结构因子中,从$ 2K_ \ text {f} $到$ 4K__ \ text {f} $的交叉因子出现在$ 2K_ \ text {f} $中。我们的研究表明,交叉是由于$ r_ \ text {s} $和$ b <r_ \ text {s} $的相互作用所致。有限的电线宽度相关效应反映在电荷的峰值和自旋结构因子的峰值上。我们符合基于有限的电线宽度理论和琼脂化线索的拟合函数的电荷和自旋结构因子的主要峰,从而使VMC数据非常拟合。电荷和自旋结构因子的明显峰值为$ 4 k_ \ text {f} $和$ 2 k_ \ text {f} $,指示充电和自由度的自由度的完全解耦。此外,发现电子相关能和tomonaga-luttinger参数$k_ρ$的电线宽度依赖性很重要。
We use the variational quantum Monte Carlo (VMC) method to study the wire width ($b$) and electron density ($r_\text{s}$) dependences of the ground-state properties of quasi-one-dimensional paramagnetic electron fluids. The onset of a quasi-Wigner crystal phase is known to depend on electron density, and the crossover occurs in the low density regime. We study the effect of wire width on the crossover of the dominant peak in the static structure factor from $k=2k_\text{F}$ to $k=4k_\text{F}$. It is found that for a fixed electron density, in the charge structure factor the crossover from the dominant peak occurring at $2k_\text{F}$ to $4k_\text{F}$ occurs as the wire width decreases. Our study suggests that the crossover is due to interplay of both $r_\text{s}$ and $b<r_\text{s}$. The finite wire width correlation effect is reflected in the peak height of the charge and spin structure factors. We fit the dominant peaks of the charge and spin structure factors assuming fit functions based on our finite wire width theory and clues from bosonization, resulting in a good fit of the VMC data. The pronounced peaks in the charge and spin structure factors at $4 k_\text{F}$ and $2 k_\text{F}$, respectively, indicate the complete decoupling of the charge and spin degrees of freedom. Furthermore, the wire width dependence of the electron correlation energy and the Tomonaga-Luttinger parameter $K_ρ$ is found to be significant.