论文标题

铅卤化物钙钛矿中的自旋电耦合

Spin-Electric Coupling in Lead Halide Perovskites

论文作者

Volosniev, Artem G., Kumar, Abhishek Shiva, Lorenc, Dusan, Ashourishokri, Younes, Zhumekenov, Ayan A., Bakr, Osman M., Lemeshko, Mikhail, Alpichshev, Zhanybek

论文摘要

铅壁钙化物具有许多显着的光电特性。为了解释其起源,有必要研究电磁场如何与这些系统相互作用。我们在这里通过研究两个经典数量来解决此问题:Faraday旋转和范式perovskite中的复杂折射率ch $ _3 $ _3 $ nh $ _3 $ _3 $ pbbr $ _3 $在宽波长范围内。我们发现,电磁场与K $ \ cdot $ phamiltonian的最小耦合也不足以描述观察到的数据,即使在定性水平上也是如此。为了修改这一点,我们证明了电磁场和自由度自由度之间存在相关的原子水平耦合。这种自旋电耦合可以定量描述许多以前的和当前的实验数据。特别是,我们在这里使用它来表明甲基二氧化碳钙钛矿中的法拉第效应主要由能量水平的Zeeman分裂主导,并且具有大量的超级效果。最后,我们提出了一般基于对称性的现象学论点,即在低能限制中,我们的有效模型包括线性顺序中电磁场对电磁场的所有基耦合项。

Lead-halide perovskites enjoy a number of remarkable optoelectronic properties. To explain their origin, it is necessary to study how electromagnetic fields interact with these systems. We address this problem here by studying two classical quantities: Faraday rotation and the complex refractive index in a paradigmatic perovskite CH$_3$NH$_3$PbBr$_3$ in a broad wavelength range. We find that the minimal coupling of electromagnetic fields to the k$\cdot$p Hamiltonian is insufficient to describe the observed data even on the qualitative level. To amend this, we demonstrate that there exists a relevant atomic-level coupling between electromagnetic fields and the spin degree of freedom. This spin-electric coupling allows for quantitative description of a number of previous as well as present experimental data. In particular, we use it here to show that the Faraday effect in lead-halide perovskites is dominated by the Zeeman splitting of the energy levels, and has a substantial beyond-Becquerel contribution. Finally, we present general symmetry-based phenomenological arguments that in the low-energy limit our effective model includes all basis coupling terms to the electromagnetic field in the linear order.

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