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Nonlinear optics from an ab initio approach by means of the dynamical Berry phase: Application to second- and third-harmonic generation in semiconductors

机译:从头算方法到动态贝里相的非线性光学:在半导体的二次谐波和三次谐波产生中的应用

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We present an ab initio real-time-based computational approach to study nonlinear optical properties in condensed matter systems that is especially suitable for crystalline solids and periodic nanostructures. The equations of motion and the coupling of the electrons with the external electric field are derived from the Berry-phase formulation of the dynamical polarization [Souza et al., Phys. Rev. B 69,085106 (2004)]. Many-body effects are introduced by adding single-particle operators to the independent-particle Hamiltonian. We add a Hartree operator to account for crystal local effects and a scissor operator to correct the independent particle band structure for quasiparticle effects. We also discuss the possibility of accurately treating excitonic effects by adding a screened Hartree-Fock self-energy operator. The approach is validated by calculating the second-harmonic generation of SiC and AlAs bulk semiconductors: an excellent agreement is obtained with existing ab initio calculations from response theory in frequency domain [Luppi et al., Phys. Rev. B 82,235201 (2010)]. We finally show applications to the second-harmonic generation of CdTe and the third-harmonic generation of Si.
机译:我们提出了一种从头开始基于实时的计算方法来研究凝聚态系统中的非线性光学性质,该性质特别适用于晶体固体和周期性纳米结构。运动方程和电子与外部电场的耦合是从动态极化的Berry相公式得出的[Souza et al。,Phys。 B版69,085106(2004)]。通过将单粒子算符添加到独立粒子哈密顿量来引入多体效应。我们添加了一个Hartree算子来解决晶体局部效应,并添加了一个剪子算子来纠正准粒子效应的独立粒子带结构。我们还讨论了通过添加经过筛选的Hartree-Fock自能算子来精确治疗激子效应的可能性。该方法通过计算SiC和AlAs块状半导体的二次谐波生成而得到验证:根据频域响应理论,现有的从头算可以得到很好的一致性[Luppi et al。,Phys。 Rev.B 82,235201(2010)]。最后,我们展示了CdTe的第二谐波和Si的第三谐波的应用。

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