论文标题

DMRG在开放式缸几何形状中的FQHE系统研究

DMRG study of FQHE systems in the open cylinder geometry

论文作者

Misguich, G., Jolicoeur, Th.

论文摘要

对二维电子的分数量子霍尔液态的研究需要对相互作用进行非扰动处理。可以对哈密顿量进行精确的对角线化,从而使人们只考虑了适当的几何形状中的少数电子。过去考虑电子在球体上或圆环上移动的电子,已经获得了许多见解。在Landau仪表中,仅在一个方向上施加周期性的边界条件也很自然。现在,相互作用的问题看起来像是一个一维问题,可以被标准DMRG算法攻击。我们已经研究了该算法在最低Landau级填充因子$ν= 1/3 $下研究电子液体的基态性能的效率,当时相互作用被截断为两个最重要的排斥性硬核成分。使用有限大小的DMRG使我们能够得出结论,基态是可压缩的两电子气泡相,与先前的Hartree-Fock计算一致。我们讨论了气缸几何形状中库仑相互作用的处理。为了使库仑电势的长距离行为正常,我们比较两种方法:使用Yukawa电位或禁止任意长距离,通过将互电子距离定义为弦距离的弦距离。这使我们能够观察到小填充因子的Wigner晶体状态。

The study of the fractional quantum Hall liquid state of two-dimensional electrons requires a non-perturbative treatment of interactions. It is possible to perform exact diagonalizations of the Hamiltonian provided one considers only a small number of electrons in an appropriate geometry. Many insights have been obtained in the past from considering electrons moving on a sphere or on a torus. In the Landau gauge it is also natural to impose periodic boundary conditions in only one direction, the cylinder geometry. The interacting problem now looks formally like a one-dimensional problem that can be attacked by the standard DMRG algorithm. We have studied the efficiency of this algorithm to study the ground state properties of the electron liquid at lowest Landau level filling factor $ν=1/3$ when the interactions are truncated to the two most important repulsive hard-core components. Use of finite-size DMRG allows us to conclude that the ground state is a compressible two-electron bubble phase in agreement with previous Hartree-Fock calculations. We discuss the treatment of Coulomb interactions in the cylinder geometry. To regularize the long-distance behavior of the Coulomb potential, we compare two methods: using a Yukawa potential or forbidding arbitrary long distances by defining the interelectron distance as the chord distance through the cylinder. This allows us to observe the Wigner crystal state for small filling factor.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源