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Competition of Pairing and Nematicity in the Two-Dimensional Electron Gas
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2020-03-16 , DOI: 10.1146/annurev-conmatphys-031119-050550
Katherine A. Schreiber 1 , Gábor A. Csáthy 2, 3, 4
Affiliation  

Due to its extremely rich phase diagram, the two-dimensional electron gas exposed to perpendicular magnetic fields has been the subject of intense and sustained study. One particularly interesting problem in this system is that of the half-filled Landau level, where the Fermi sea of composite fermions, a fractional quantum Hall state arising from a pairing instability of the composite fermions, and the quantum Hall nematic were observed in the half-filled N = 0, N = 1, and N ≥ 2 Landau levels, respectively. Thus, different ground states developed in different half-filled Landau levels. This situation has recently changed, when evidence for both the paired fractional quantum Hall state and the quantum Hall nematic was reported in the half-filled N = 1 Landau level. Furthermore, a direct quantum phase transition between these two ordered states was found. These results highlight an intimate connection between pairing and nematicity, which is a topic of current interest in several strongly correlated systems, in a well-understood and low-disorder environment.

中文翻译:


二维电子气中配对和向列的竞争

由于其极其丰富的相图,暴露于垂直磁场的二维电子气一直是持续不断的研究主题。该系统中一个特别有趣的问题是半填充的朗道能级,其中复合费米子的费米海,由复合费米子的配对不稳定性产生的分数量子霍尔态以及在半数中观测到的量子霍尔向列填充的N = 0,N = 1和N≥2 Landau级别。因此,在不同的半填满朗道水平面中形成了不同的基态。这种情况最近发生了变化,在半填充的N中报告了成对的分数量子霍尔态和量子霍尔向列相的证据。= 1兰道等级。此外,发现了这两个有序状态之间的直接量子相变。这些结果突显了配对和向列性之间的紧密联系,这是在一个易于理解且低混乱的环境中,几个高度相关的系统当前关注的话题。

更新日期:2020-04-21
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