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首页> 外文期刊>The Journal of Chemical Physics >Semiclassical vibrational spectroscopy with Hessian databases
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Semiclassical vibrational spectroscopy with Hessian databases

机译:与Hessian数据库的二氧化碳振动光谱

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We report on a new approach to ease the computational overhead of ab initio "on-the-fly" semiclassical dynamics simulations for vibrational spectroscopy. The well known bottleneck of such computations lies in the necessity to estimate the Hessian matrix for propagating the semiclassical pre-exponential factor at each step along the dynamics. The procedure proposed here is based on the creation of a dynamical database of Hessians and associated molecular geometries able to speed up calculations while preserving the accuracy of results at a satisfactory level. This new approach can be interfaced to both analytical potential energy surfaces and on-the-fly dynamics, allowing one to study even large systems previously not achievable. We present results obtained for semiclassical vibrational power spectra of methane, glycine, and N-acetyl-L-phenylalaninyl-L-methionine-amide, a molecule of biological interest made of 46 atoms. Published under license by AIP Publishing.
机译:我们报告了一种新方法,以简化AB Initio“现行”半定类动力学模拟振动光谱的计算开销。 这些计算的众所周知的瓶颈在于估计Hessian矩阵,用于在沿着动态的每个步骤中传播半分类预指数因子。 这里提出的程序基于创建Hessians的动态数据库和能够加速计算的相关分子几何形状,同时保持令人满意的水平的结果的准确性。 这种新方法可以与分析潜在能量表面和在线动态接口,允许人们甚至可以研究以前不可实现的大型系统。 我们存在甲烷,甘氨酸和N-乙酰-1-苯基-1-甲硫氨酸 - 酰胺的半半来碱振动功率光谱的结果,是由46个原子制成的生物利益分子。 通过AIP发布在许可证下发布。

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