论文标题
剖面酶TiO2中的巨型激子密度
Giant exciton Mott density in anatase TiO2
论文作者
论文摘要
阐明强烈结合的激子分离为不相关的电子孔对等离子体的载体密度是半导体多体物理学的核心主题。但是,由于在此难以捉摸的光谱范围内没有合适的实验探针,因此缺乏有关近距离紫外线中激素吸收的高密度响应的信息。在这里,我们介绍了多体扰动理论和最先进的超快宽带紫外线光谱的独特组合,以揭示了抗紫外线的二维激素tiO $ _2 $的紫外线二维激素与电子孔孔的相互作用之间的相互作用。我们发现,这种材料中激子莫特过渡的临界密度是半导体中报道的最高的。这些结果加深了我们对激子莫特过渡的了解,并在各种宽间隙绝缘子中铺平了对激子相图研究的途径。
Elucidating the carrier density at which strongly bound excitons dissociate into a plasma of uncorrelated electron-hole pairs is a central topic in the many-body physics of semiconductors. However, there is a lack of information on the high-density response of excitons absorbing in the near-to-mid ultraviolet, due to the absence of suitable experimental probes in this elusive spectral range. Here, we present a unique combination of many-body perturbation theory and state-of-the-art ultrafast broadband ultraviolet spectroscopy to unveil the interplay between the ultraviolet-absorbing two-dimensional excitons of anatase TiO$_2$ and a sea of electron-hole pairs. We discover that the critical density for the exciton Mott transition in this material is the highest ever reported in semiconductors. These results deepen our knowledge of the exciton Mott transition and pave the route toward the investigation of the exciton phase diagram in a variety of wide-gap insulators.