论文标题

大量空缺的双钙壶中的巨型激子效应

Giant excitonic effects in bulk vacancy-ordered double perovskites

论文作者

Zhang, Fan, Gao, Weiwei, Cruz, Greis J., Sun, Yi-yang, Zhang, Peihong, Zhao, Jijun

论文摘要

使用First-Principles GW加伯特盐方程计算,我们在几个空缺订购的双钙蛋白酶CS2MX6(M = Ti,Zr; X = I,BR)中确定异常强的激子效应。在这些中等间隙的无机散装半导体中发现了巨大的激子结合能,大约有1 eV,从而推动了我们对固体中电子孔(E-H)相互作用(E-H)相互作用的理解和激子形成的极限。与任何其他中等间隙的大体半导体相比,激子结合能不仅非常大,而且它们也比具有可比的准粒子间隙的典型2D半导体大。我们计算出的最低的亮激子能量与实验光节间隙非常吻合。低能量激子与分子晶体中的Frenkel激子非常类似,因为它们在单个[MX6] 2-八面体中高度局部,并在倒数空间中扩展。弱介质筛选效应和近乎平坦的边界电子带,这些效果源自弱键[MX6] 2单元,共同解释了显着的激子效应。旋转轨道耦合效应通过混合自旋平线和自旋三链激子激子在红色转移最低的亮激子中起着至关重要的作用,而激子 - phonon耦合效应对强烈的激子结合能的影响很小。

Using first-principles GW plus Bethe-Salpeter equation calculations, we identify anomalously strong excitonic effects in several vacancy-ordered double perovskites Cs2MX6 (M = Ti, Zr; X = I, Br). Giant exciton binding energies about 1 eV are found in these moderate-gap, inorganic bulk semiconductors, pushing the limit of our understanding of electron-hole (e-h) interaction and exciton formation in solids. Not only are the exciton binding energies extremely large compared with any other moderate-gap bulk semiconductors, but they are also larger than typical 2D semiconductors with comparable quasiparticle gaps. Our calculated lowest bright exciton energy agrees well with the experimental optical band gap. The low-energy excitons closely resemble the Frenkel excitons in molecular crystals, as they are highly localized in a single [MX6]2- octahedron and extended in the reciprocal space. The weak dielectric screening effects and the nearly flat frontier electronic bands, which are derived from the weakly bonded [MX6]2- units, together explain the significant excitonic effects. Spin-orbit coupling effects play a crucial role in red-shifting the lowest bright exciton by mixing up spin-singlet and spin-triplet excitons, while exciton-phonon coupling effects have minor impacts on the strong exciton binding energies.

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