论文标题

部分可观测时空混沌系统的无模型预测

Anisotropic, two-dimensional, disordered Wigner solid

论文作者

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

论文摘要

费米海各向异性,电子电子相互作用和定位现象之间的相互作用会引起异国情调的多体相。一个令人兴奋的例子是各向异性的二维(2D)Wigner固体(WS),其中电子形成具有各向异性晶格结构的有序阵列。这样的状态已经避免了到目前为止的实验,因为它的实现极为苛刻:首先,WS需要非常低的密度,在这种情况下,库仑相互作用在动力学(Fermi)能量上占主导地位。在保持疾病较低的同时达到如此低的密度非常具有挑战性。其次,必须在容纳各向异性费米海的材料中满足低密度需求。在这里,我们报告了具有各向异性有效质量和费米海的干净(低端)2D电子系统中的传输测量。数据表明,在极低的电子密度下,当R_S参数(库仑与费米能的比率)超过38时,电流 - 电压特性在小直流偏置下变得强烈非线性。非线性特征的几个关键特征,包括其各向异性电压阈值,与无处不在的无序疾病潜力固定的无序,各向异性WS的形成一致。

The interplay between the Fermi sea anisotropy, electron-electron interaction, and localization phenomena can give rise to exotic many-body phases. An exciting example is an anisotropic two-dimensional (2D) Wigner solid (WS), where electrons form an ordered array with an anisotropic lattice structure. Such a state has eluded experiments up to now as its realization is extremely demanding: First, a WS entails very low densities where the Coulomb interaction dominates over the kinetic (Fermi) energy. Attaining such low densities while keeping the disorder low is very challenging. Second, the low-density requirement has to be fulfilled in a material that hosts an anisotropic Fermi sea. Here, we report transport measurements in a clean (low-disorder) 2D electron system with anisotropic effective mass and Fermi sea. The data reveal that at extremely low electron densities, when the r_s parameter, the ratio of the Coulomb to the Fermi energy, exceeds 38, the current-voltage characteristics become strongly nonlinear at small dc biases. Several key features of the nonlinear characteristics, including their anisotropic voltage thresholds, are consistent with the formation of a disordered, anisotropic WS pinned by the ubiquitous disorder potential.

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