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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Calculating dipole and quadrupole polarizabilities relevant to surface enhanced Raman spectroscopy
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Calculating dipole and quadrupole polarizabilities relevant to surface enhanced Raman spectroscopy

机译:计算与表面增强拉曼光谱有关的偶极和四极极化率

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We have used ab initio electronic structure calculations to calculate the frequency dependent dipole-dipole polarizability (#alpha#), quadrupole-dipole polarizability (A), quadrupole-quadrupole polarizability (C), (electric) dipole-magnetic dipole polarizability (G), and their normal coordinate derivatives for CO. The polarizability derivatives are of relevance to the interpretation of surface enhanced Raman (SER) spectra. Basis set convergence of these spectroscopic properties is studied, along with the effect of including electron correlation at the second-order polarization propagator (SOPPA) level, and the variation of the results with excitation frequency. The largest basis set SOPPA results that we have generated appear to be converged to within 20 percent or better for most of the properties we have studied, however in a few cases the convergence is much poorer. The most difficult property to converge involves the off-diagonal component of the derivatives of the quadrupole-dipole polarizability tensor. Our results show that the ratio of the largest components of A to the largest components of #alpha# are on the order of one atomic unit in size, and a similar statement can be made concerning the corresponding ratios of the normal coordinate derivatives. This means that the ratio of field derivatives to field strengths will also have to be on the order of one atomic unit in order for A and C to contribute comparably to #alpha# in determining SERS intensities.
机译:我们已使用从头算电子结构计算来计算频率相关的偶极-偶极极化率(#alpha#),四极-偶极极化率(A),四极-四极极化率(C),(电)偶极-磁偶极极化率(G) ,以及它们对CO的法向坐标导数。极化率导数与表面增强拉曼(SER)光谱的解释有关。研究了这些光谱性质的基集收敛性,以及在二阶偏振传播器(SOPPA)级别包括电子相关性的影响,以及结果随激发频率的变化。对于我们研究的大多数属性,我们生成的最大基集SOPPA结果似乎收敛于20%或更好,但是在某些情况下,收敛性要差得多。最难收敛的性质涉及四极-偶极极化率张量的导数的非对角分量。我们的结果表明,A的最大成分与#alpha#的最大成分之比在一个原子单元的数量级上,并且可以对法向坐标导数的相应比率做出类似的陈述。这意味着场导数与场强之比也必须约为一个原子单位,以便A和C在确定SERS强度时可与#alpha#相提并论。

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