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Novel mechanisms of optical harmonic generation on excitons in semiconductors

机译:半导体激子上产生光谐波的新机制

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Nonlinear optics of semiconductors is an important field of fundamental and applied research, but surprisingly the role of excitons in the coherent processes leading to harmonics generation has remained essentially unexplored. Here we report on some examples of experimental and theoretical study of the second- (SHG) and third (THG) harmonic generation involving the exciton resonances in the noncentrosymmetric semiconductors ZnO and GaAs. External electric and magnetic fields are used to modify exciton states and their nonlinear optical properties. Depending on the particular symmetry of the exciton states SHG/THG can originate from the electric- and magnetic-field-induced perturbations of the excitons due to the Stark effect, the spin as well as orbital Zeeman effects, or the magneto-Stark effect. A microscopic theory of SHG and THG on excitons is developed, which shows that the nonlinear interaction of coherent light with excitons has to be considered beyond the electric-dipole approximation.
机译:半导体的非线性光学是基础研究和应用研究的重要领域,但是令人惊讶的是,激子在导致谐波产生的相干过程中的作用基本上尚未被探索。在这里,我们将报告涉及非中心对称半导体ZnO和GaAs中的激子共振的二次(SHG)和三次(THG)谐波产生的实验和理论研究的一些示例。外部电场和磁场用于修改激子态及其非线性光学特性。取决于激子状态的特定对称性,SHG / THG可以源自电场和磁场引起的激子的扰动,这是由Stark效应,自旋以及轨道塞曼效应或磁Stark效应引起的。建立了SHG和THG对激子的微观理论,表明相干光与激子的非线性相互作用必须在电偶极子近似之外考虑。

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