论文标题
研究六甲酯钙钛矿的光学特性的有效模型
Effective model for studying optical properties of lead-halide perovskites
论文作者
论文摘要
我们使用一般对称性参数来构建一个有效的模型,适用于研究六甲酯钙钛矿的光学特性。为了构建模型,我们确定电磁场之间的原子级相互作用和应添加到最小耦合的$ \ mathbf {k \ cdot p} $ hamiltonian中的自由度的自由度。作为第一个应用,我们研究了材料的两个基本光学特征:Verdet常数和折射率。除了材料的这些线性特征之外,模型还适合计算非线性效应,例如三阶光敏感性。对该数量的分析表明,自旋术语的几何特性暗示了系统的各向同性光学响应,而二甲酯perovskites的光学各向异性是荷载载体跳跃的体现。为了说明这一点,我们讨论了第三次谐音一代。
We use general symmetry-based arguments to construct an effective model suitable for studying optical properties of lead-halide perovskites. To build the model, we identify an atomic-level interaction between electromagnetic fields and the spin degree of freedom that should be added to a minimally-coupled $\mathbf{k\cdot p}$ Hamiltonian. As a first application, we study two basic optical characteristics of the material: the Verdet constant and the refractive index. Beyond these linear characteristics of the material the model is suitable for calculating non-linear effects such as the third-order optical susceptibility. Analysis of this quantity shows that the geometrical properties of the spin-electric term imply isotropic optical response of the system, and that optical anisotropy of lead-halide perovskites is a manifestation of hopping of charge carriers. To illustrate this, we discuss third-harmonic generation.