Physics Department, Simon Fraser University, 8888 University Drive, Burnaby, BC, V5A 1S6, Canada.
J Phys Condens Matter. 2012 Feb 8;24(5):055601. doi: 10.1088/0953-8984/24/5/055601. Epub 2012 Jan 6.
Electron-electron interactions in half-filled high Landau levels in two-dimensional electron gases in a strong perpendicular magnetic field can lead to states with anisotropic longitudinal resistance. This longitudinal resistance is generally believed to arise from broken rotational invariance, which is indicated by charge density wave order in Hartree-Fock calculations. We use the Hartree-Fock approximation to study the influence of externally tuned Landau level mixing on the formation of interaction-induced states that break rotational invariance in two-dimensional electron and hole systems. We focus on the situation when there are two non-interacting states in the vicinity of the Fermi level and construct a Landau theory to study coupled charge density wave order that can occur as interactions are tuned and the filling or mixing are varied. We consider numerically a specific example where mixing is tuned externally through Rashba spin-orbit coupling. We calculate the phase diagram and find the possibility of ordering involving coupled striped or triangular charge density waves in the two levels. Our results may be relevant to recent transport experiments on quantum Hall nematics in which Landau level mixing plays an important role.
在强垂直磁场中的二维电子气中,填满一半的高朗道能级中的电子-电子相互作用会导致具有各向异性纵向电阻的状态。这种纵向电阻通常被认为是由于旋转不变性的破坏而产生的,这在哈特ree-fock 计算中表现为电荷密度波序。我们使用哈特ree-fock 近似来研究外部调节的朗道能级混合对二维电子和空穴系统中打破旋转不变性的相互作用诱导态形成的影响。我们关注的是在费米能级附近有两个非相互作用态的情况,并构建一个 Landau 理论来研究当相互作用被调节和填充或混合变化时可能发生的耦合电荷密度波序。我们考虑了一个特定的例子,其中通过 Rashba 自旋轨道耦合外部调节混合。我们计算了相图,并发现了在两个能级中涉及耦合条纹或三角形电荷密度波的有序的可能性。我们的结果可能与最近关于量子霍尔向列体的输运实验有关,其中朗道能级混合起着重要的作用。