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具有大的线性、非线性光学灵敏度和超极化率的偏心非线性光学 2,4-二羟基腙同晶晶体。

Acentric nonlinear optical 2,4-dihydroxyl hydrazone isomorphic crystals with large linear, nonlinear optical susceptibilities and hyperpolarizability.

机构信息

School of Complex Systems, FFWP, South Bohemia University, Nove Hrady, Czech Republic.

出版信息

J Phys Chem B. 2012 Apr 19;116(15):4677-83. doi: 10.1021/jp3003036. Epub 2012 Apr 6.

Abstract

A systematic ab initio study of the linear, nonlinear optical susceptibilities, and hyperpolarizability of noncentrosymmetric-monoclinic 2,4-dihydroxyl hydrazone isomorphic crystals (DHNPH) within density functional theory in the local density approximation (LDA), general gradient approximation (GGA), the Engel-Vosko generalized gradient approximation (EV-GGA) and modified Becke-Johnson potential (mBJ) has been performed. The complex dielectric susceptibility dispersion, its zero-frequency limit and the birefringence are studied. Using scissors’ corrected mBJ we find a large uniaxial dielectric anisotropy (-0.56) resulting in a significant birefringence (0.61). We also find that 2,4- DHNPH possess large second harmonic generation. The calculated second order susceptibility tensor components for the static limit |χ(111)(2)(0)| and |χ(111)(2)(ω)| at λ=1.9 μm (0.651 eV) and at λ = 1.064 μm (1.165 eV) are 53, 91, and 209 pm/V, respectively. A remarkable finding, applying the scissors’ correction has a profound effect on value, magnitude and sign of χ(ijk)(2)(ω). In additional we have calculated the microscopic hyperpolarizability, β(111), vector component along the principal dipole moment directions for the dominant component. We find that the value of β(111) equal to 47× 10(-30) esu, in good agreement with the measured value (48.2× 10(-30) esu).

摘要

采用密度泛函理论中的局域密度近似(LDA)、广义梯度近似(GGA)、恩格尔-文克思广义梯度近似(EV-GGA)和修正贝克尔-约翰逊势(mBJ),对非中心对称单斜 2,4-二羟基腙同晶(DHNPH)晶体的线性、非线性光学和超极化率进行了系统的从头算研究。研究了复介电常数的色散、零频极限和双折射。通过使用剪刀修正的 mBJ,我们发现了较大的单轴介电各向异性(-0.56),导致较大的双折射(0.61)。我们还发现 2,4-DHNPH 具有较大的二次谐波产生。在静态极限下,计算出的二阶极化率张量分量|χ(111)(2)(0)|和|χ(111)(2)(ω)|,在 λ=1.9 μm(0.651 eV)和 λ = 1.064 μm(1.165 eV)处,分别为 53、91 和 209 pm/V。一个显著的发现是,应用剪刀修正对 χ(ijk)(2)(ω)的值、大小和符号有深远的影响。此外,我们还计算了微观超极化率β(111),沿着主要偶极矩方向的向量分量,对于主要分量。我们发现β(111)的值等于 47× 10(-30) esu,与测量值(48.2× 10(-30) esu)吻合较好。

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