论文标题
单层中的激子 - 果龙相互作用WS $ _2 $
Exciton-polaron interactions in monolayer WS$_2$
论文作者
论文摘要
准粒子之间的相互作用至关重要,最终确定了量子物质的宏观特性。一个著名的例子是超导性的现象,它是由有吸引力的电子电子相互作用引起的,这些相互作用是由声子或材料中其他更奇特的波动介导的。在这里,我们将流动激子杂质引入二维电子气体,并研究所得的费米极性准颗粒之间的相互作用。我们在单层WS $ _2 $上采用了多维相干光谱,该光谱$ _2 $,它为确定偏光元 - 孔杆相互作用的性质提供了理想的平台,这是由于基础的TRION精细结构和Valley特定的光学选择规则。在低电子掺杂密度下,我们发现主要的相互作用是在同一费米海穿着的北极星之间。在没有结合的极性对(双极对)的情况下,我们使用最小的微观模型表明,这些相互作用源于相位空间填充效果,其中激素竞争相同的电子。我们进一步揭示了具有较大结合能的双极结合状态的存在,涉及不同山谷中的激子与同一电子结合。我们的工作奠定了探测和理解二维分层结构(例如Moiré超晶格)中强电子相关效应的基础。
Interactions between quasiparticles are of fundamental importance and ultimately determine the macroscopic properties of quantum matter. A famous example is the phenomenon of superconductivity, which arises from attractive electron-electron interactions that are mediated by phonons or even other more exotic fluctuations in the material. Here we introduce mobile exciton impurities into a two-dimensional electron gas and investigate the interactions between the resulting Fermi polaron quasiparticles. We employ multi-dimensional coherent spectroscopy on monolayer WS$_2$, which provides an ideal platform for determining the nature of polaron-polaron interactions due to the underlying trion fine structure and the valley specific optical selection rules. At low electron doping densities, we find that the dominant interactions are between polaron states that are dressed by the same Fermi sea. In the absence of bound polaron pairs (bipolarons), we show using a minimal microscopic model that these interactions originate from a phase-space filling effect, where excitons compete for the same electrons. We furthermore reveal the existence of a bipolaron bound state with remarkably large binding energy, involving excitons in different valleys cooperatively bound to the same electron. Our work lays the foundation for probing and understanding strong electron correlation effects in two-dimensional layered structures such as moiré superlattices.