论文标题

小填充物处分数量子厅液体与固体固体之间的竞争:层厚度和Landau水平混合的作用

Competition between fractional quantum Hall liquid and Wigner solid at small fillings: Role of layer thickness and Landau level mixing

论文作者

Rosales, K. A. Villegas, Singh, S. K., Ma, Meng K., Hossain, Md. Shafayat, Chung, Y. J., Pfeiffer, L. N., West, K. W., Baldwin, K. W., Shayegan, M.

论文摘要

在相互作用占主导地位的情况下,二维电子系统(2DE)的基态命运是什么?长期以来,人们认为有序的电子阵列,即所谓的Wigner Crystal,是答案。实际上,这是对难以捉摸的wigner晶体的搜索,导致发现了意外的,不可压缩的液态状态,即$ν= 1/3 $的分数量子厅状态。从那以后,了解液体和固态之间的竞争一直是基本研究的积极领域。在这里,我们报告了一个新的二维系统的实验数据,其中电子被局限于Alas量子。样品的异常高质量和大型电子有效质量使我们能够在$ \ simeq 1/3 $和$ \ simeq 1/5 $的大量填充因子中确定二维电子的液体固相图。数据及其与可用的理论相图的比较揭示了Landau水平混合和有限的电子层厚度在确定主要基础状态的关键作用。

What is the fate of the ground state of a two-dimensional electron system (2DES) at very low Landau level filling factors ($ν$) where interaction reigns supreme? An ordered array of electrons, the so-called Wigner crystal, has long been believed to be the answer. It was in fact the search for the elusive Wigner crystal that led to the discovery of an unexpected, incompressible liquid state, namely the fractional quantum Hall state at $ν=1/3$. Understanding the competition between the liquid and solid ground states has since remained an active field of fundamental research. Here we report experimental data for a new two-dimensional system where the electrons are confined to an AlAs quantum well. The exceptionally high quality of the samples and the large electron effective mass allow us to determine the liquid-solid phase diagram for the two-dimensional electrons in a large range of filling factors near $\simeq 1/3$ and $\simeq 1/5$. The data and their comparison with an available theoretical phase diagram reveal the crucial role of Landau level mixing and finite electron layer thickness in determining the prevailing ground states.

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