论文标题

Magneto-Stark and Zeeman效应作为Cu $ _2 $ o的第二次谐波生成激子的起源

Magneto-Stark and Zeeman effect as origin of second harmonic generation of excitons in Cu$_2$O

论文作者

Farenbruch, A., Mund, J., Fröhlich, D., Yakovlev, D. R., Bayer, M., Semina, M. A., Glazov, M. M.

论文摘要

我们报告了磁场诱导的第二次谐波生成(SHG)和两光子吸收(TPA)的实验和理论研究,该激发的激发激元态($ n \ geq 3 $)在Cu $ _2 $ o中的黄色系列($ n \ geq 3 $)。在这种中心对称材料中,由于电偶极子和电二极管/磁偶极转变的建设性相互作用,可以发生SHG,以沿低对称方向传播[111]或[112]。通过在VOIGT配置中应用磁场,SHG还可以沿[110]轴甚至高对称性立方方向进行激发[001]。结合了对称分析和微观理论,我们发现了对磁场诱导的SHG的两个关键贡献:zeeman效应和磁态效应。我们证明了SHG强度对Ingoing基本激光和外向SHG梁的线性极化角度的系统依赖性。通常,所得的轮廓图与对称分析相结合,使人们可以独特地确定相关过渡的特征。此外,我们可以通过适当选择实验几何形状和极化构型在磁场中分离Zeeman和Magneto-Stark效应。我们提出了一个在中心对称立方半导体中第二次谐波产生激子的微观理论,考虑到了对称性氧化物的对称性和带状结构。根据开发的微观理论,我们确定了$ s $ - ,$ p $ - 和$ d $ excitons的二阶非线性易感性的主要贡献。我们在不存在和存在磁场的情况下分析了激子状态之间SHG强度的重新分布,并与实验数据显示了很好的一致性。随着激子主量子数的增加,磁态效应使Zeeman效应的影响超越了。

We report on the experimental and theoretical investigation of magnetic-field-induced second harmonic generation (SHG) and two-photon absorption (TPA) of excited exciton states ($n \geq 3$) of the yellow series in Cu$_2$O. In this centrosymmetric material, SHG can occur due to constructive interplay of electric dipole and electric quadrupole/magnetic dipole transitions for light propagating along the low-symmetry directions [111] or [112]. By application of a magnetic field in Voigt configuration, SHG gets also allowed for excitation along the [110]-axis and even the high-symmetry cubic direction [001]. Combining a symmetry analysis and a microscopic theory, we uncover the two key contributions to the magnetic-field-induced SHG: the Zeeman effect and the magneto-Stark effect. We demonstrate systematic dependencies of the SHG intensity on the linear polarization angles of the ingoing fundamental laser and the outgoing SHG beam. In general, the resulting contour plots in combination with a symmetry analysis allow one to determine uniquely the character of involved transitions. Moreover, we can separate in magnetic field the Zeeman and the magneto-Stark effect through appropriate choice of the experimental geometry and polarization configuration. We present a microscopic theory of the second harmonic generation of excitons in a centrosymmetric cubic semiconductor taking into account the symmetry and the band structure of cuprous oxide. Based on the developed microscopic theory we identify the main contributions to the second-order nonlinear susceptibility of $S$-, $P$- and $D$-excitons. We analyze the redistribution of SHG intensities between the excitonic states both in the absence and presence of the magnetic field and show good agreement with the experimental data. With increasing exciton principal quantum number the magneto-Stark effect overpowers the influence of the Zeeman effect.

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