Radzihovsky Leo, Dorsey Alan T
Department of Physics, University of Colorado, Boulder, Colorado 80309, USA.
Phys Rev Lett. 2002 May 27;88(21):216802. doi: 10.1103/PhysRevLett.88.216802. Epub 2002 May 9.
Transport measurements on two-dimensional electron systems in moderate magnetic fields suggest the existence of a spontaneously orientationally ordered, compressible liquid state. We develop and analyze a microscopic theory of such a "quantum Hall nematic" (QHN) phase, predict the existence of a novel, highly anisotropic q(3) density-director mode, find that the T = 0 long-range orientational order is unstable to weak disorder, and compute the tunneling into such a strongly correlated state. This microscopic approach is supported and complemented by a hydrodynamic model of the QHN, which, in the dissipationless limit, reproduces the modes of the microscopic model.
在中等磁场下对二维电子系统进行的输运测量表明,存在一种自发取向有序的可压缩液态。我们发展并分析了这种“量子霍尔向列相”(QHN)的微观理论,预测了一种新型的、高度各向异性的q(3)密度 - 指向矢模式的存在,发现T = 0时的长程取向序对弱无序是不稳定的,并计算了进入这种强关联态的隧穿。这种微观方法得到了QHN流体动力学模型的支持和补充,该模型在无耗散极限下再现了微观模型的模式。