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混合晶体 Ag(0.5)Pb(1.75)Ge(S(1-x)Se(x))4 的线性、非线性光学系数和超极化率:实验与理论。

Linear, non-linear optical susceptibilities and the hyperpolarizability of the mixed crystals Ag(0.5)Pb(1.75)Ge(S(1-x)Se(x))4: experiment and theory.

机构信息

Institute of Complex systems, FFPW, CENAKVA, University of South Bohemia in CB, Nove Hrady 37333, Czech Republic.

出版信息

Phys Chem Chem Phys. 2013 Nov 21;15(43):18979-86. doi: 10.1039/c3cp53431f.

DOI:10.1039/c3cp53431f
PMID:24097293
Abstract

As the starting point for a comprehensive theoretical investigation of the linear and nonlinear optical susceptibilities, we have used our experimental crystallographic data for Ag0.5Pb1.75GeS3Se (Ag2Pb7Ge4S12Se4) reported. The experimental crystallographic positions were optimized by minimizing the forces acting on each atom to get meaningful theoretical predictions of the optical properties. The linear optical susceptibilities are calculated. We find that the optical band gap shows very good agreement with our measured gap. The second-order nonlinear optical (NLO) susceptibilities dispersion namely the optical second harmonic generation (SHG) is calculated and compared with our experimental measurements. The microscopic first order hyperpolarizability, β123, vector component along the principal dipole moment directions for the χ((2))(123)(ω) component was obtained theoretically and compared with our measured values at different temperatures. The dependence of the two-photon absorption (TPA) for the pump-probing at SHG of the microsecond CO2 laser was measured. In addition we explored the linear electro-optical effect in these crystals. This effect is described by the third rank polar tensors similarly to the SHG. However, for the Pockels effect besides the electronic contribution, the phonon subsystem also begins to play a principal role. As a consequence we study the dispersion of the linear electro-optical effects in the mentioned crystals.

摘要

作为对线性和非线性光学极化率进行全面理论研究的起点,我们使用了我们之前报道的 Ag0.5Pb1.75GeS3Se(Ag2Pb7Ge4S12Se4)的实验晶体学数据。通过最小化每个原子所受的力来优化实验晶体学位置,从而对光学性质进行有意义的理论预测。我们计算了线性光学极化率。我们发现光学带隙与我们测量的带隙非常吻合。此外,还计算并比较了二阶非线性光学(NLO)极化率色散,即光二次谐波产生(SHG)。通过理论计算获得了沿主偶极矩方向的微观一阶超极化率β123 的矢量分量,并与不同温度下的实验值进行了比较。我们测量了在微秒 CO2 激光的 SHG 下泵浦探测的双光子吸收(TPA)的依赖性。此外,我们还研究了这些晶体中的线性电光效应。该效应与 SHG 类似,由三阶极张量描述。然而,对于光克尔效应,除了电子贡献外,声子子系统也开始发挥主要作用。因此,我们研究了所提到的晶体中线性电光效应的色散。

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