论文标题

平面引起的多体相互作用和分层半导体中的激子复合物

Flat-band-induced many-body interactions and exciton complexes in a layered semiconductor

论文作者

Pasquale, Gabriele, Sun, Zhe, Cernevics, Kristians, Perea-Causin, Raul, Tagarelli, Fedele, Watanabe, Kenji, Taniguchi, Takashi, Malic, Ermin, Yazyev, Oleg V., Kis, Andras

论文摘要

一系列粒子之间的相互作用在固体中产生多体效应,从而对材料特性进行了惊人的修改。重型载体质量可以在广泛的范围内产生强大的相互作用和栅极控制,这使二维半导体成为一个令人兴奋的操场,可以探索多体物理。 IIII-VI金属一单位元化的家族作为其出色的光学特性和带有墨西哥帽子的倒置的平坦价频带分散,成为了此目的的新平台。在这项工作中,我们通过光致发光光谱法介绍了几层INSE中的电荷可调激子。从光谱中,我们确定INSE中的自由激子更有可能被电离供体捕获,这是由于较大的激子BOHR半径,从而形成了结合的激子复合物。出乎意料的是,激烈的激子能量的明显红移伴随着孔掺杂时的激子结合能的降低,揭示了由费米储层的存在引起的显着带隙重生和动态筛选。我们的发现将INSE确立为可再现且可能制造的平台,用于探索电子相关现象而无需进行扭转角工程。

Interactions among a collection of particles generate many-body effects in solids resulting in striking modifications of material properties. The heavy carrier mass that yields strong interactions and gate control of carrier density over a wide range, make two-dimensional semiconductors an exciting playground to explore many-body physics. The family of III-VI metal monochalcogenides emerges as a new platform for this purpose due to its excellent optical properties and the flat valence band dispersion with a Mexican-hat-like inversion. In this work, we present a complete study of charge-tunable excitons in few-layer InSe by photoluminescence spectroscopy. From the optical spectra, we establish that free excitons in InSe are more likely to be captured by ionized donors due to the large exciton Bohr radius, leading to the formation of bound exciton complexes. Surprisingly, a pronounced redshift of the exciton energy accompanied by a decrease of the exciton binding energy upon hole-doping reveals a significant band gap renormalization and dynamical screening induced by the presence of the Fermi reservoir. Our findings establish InSe as a reproducible and potentially manufacturable platform to explore electron correlation phenomena without the need for twist-angle engineering.

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