论文标题

可压缩和不可压缩的二维电子液体中的光激发

Optical excitations in compressible and incompressible two-dimensional electron liquids

论文作者

Graß, Tobias, Cotlet, Ovidiu, İmamoğlu, Atac, Hafezi, Mohammad

论文摘要

光学生成的电子孔对可以探测强烈相关的电子物质,或者通过在光学腔内形成激子 - 孔子,产生光子非线性。本文理论上研究了分数量子厅制度中二维电子液体中电子孔对的性质。特别是,我们通过在完全自旋和Landau水平极化的假设下数字评估系统的能量光谱来量化光激励之间的有效相互作用。光学上最活跃的是那些不改变电子液体相关性(也称为乘法状态)的对激发。在电子和孔的空间分离的情况下,这些激发相互排斥。但是,当电子液体可压缩时,其他非培养构型出现在较低的能量下。这种黑暗激发的相互作用在很大程度上取决于液体,也可能变得有吸引力。对于单个激发的情况,我们还研究了Valence带中Landau水平混合的效果,从而可以显着改变激子的有效质量。

Optically generated electron-hole pairs can probe strongly correlated electronic matter, or, by forming exciton-polaritons within an optical cavity, give rise to photonic nonlinearities. The present paper theoretically studies the properties of electron-hole pairs in a two-dimensional electron liquid in the fractional quantum Hall regime. In particular, we quantify the effective interactions between optical excitations by numerically evaluating the system's energy spectrum under the assumption of full spin and Landau level polarization. Optically most active are those pair excitations which do not modify the correlations of the electron liquid, also known as multiplicative states. In the case of spatial separation of electrons and holes, these excitations interact repulsively with each other. However, when the electron liquid is compressible, other non-multiplicative configurations occur at lower energies. The interactions of such dark excitations strongly depend on the liquid, and can also become attractive. For the case of a single excitation, we also study the effect of Landau level mixing in the valence band which can dramatically change the effective mass of an exciton.

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