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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >On the Mean Accuracy of the Separable VSCF Approximation for Large Molecules
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On the Mean Accuracy of the Separable VSCF Approximation for Large Molecules

机译:大分子可分离VSCF逼近的平均精度

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摘要

The separable VSCF approximation and the VSCF-PT2 method are extensively used for anharmonic vibrational spectroscopy calculations of large molecules. VSCF-PT2 uses second-order perturbation theory to correct the VSCF level, and is thus more accurate. It is shown by test calculations for a series of amino acids and peptides that the mean deviation of VSCF from VSCF-PT2 frequencies decreases for an increasing number of modes N, the decrease scaling roughly with log N. It is conjectured that the result is a manifestation of improved mean accuracy of VSCF as a mean-field approximation, a consequence of increased averaging with increasing numbers of modes. There is no systematic increase in VSCF accuracy with AT for individual vibrational transitions. Increased accuracy of VSCF with N is found for certain groups of transitions, e.g., N-H stretches. The results are expected to be useful in choosing methods for spectroscopy calculations of extended systems such as large peptides, proteins, and nucleic acids.
机译:可分离的VSCF近似和VSCF-PT2方法被广泛用于大分子的非谐振动光谱计算。 VSCF-PT2使用二阶微扰理论来校正VSCF电平,因此更加准确。通过一系列氨基酸和肽段的测试计算表明,随着模式N的增加,VSCF与VSCF-PT2频率的平均偏差减小,减小的幅度与log N大致成比例。推测结果是均值场近似表示VSCF的平均精度得到改善的结果,这是平均数随模数增加而增加的结果。对于单个振动过渡,使用AT的VSCF精度没有系统的提高。对于某些过渡组,例如N-H拉伸,发现VSCF的精度提高了N。预期结果将有助于选择扩展系统(例如大肽,蛋白质和核酸)的光谱计算方法。

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