Dynamic Versus Static Approach To Theoretical Anharmonic Vibrational Spectroscopy Of Molecular Species Relevant To Atmospheric Chemistry: A Case Study Of Formic Acid

SCALABLE COMPUTING-PRACTICE AND EXPERIENCE(2018)

引用 2|浏览10
暂无评分
摘要
Vibrational spectra of the two conformers of the free formic acid molecule are computed by two approaches, with a special emphasis on the region of O-H stretching modes. The first approach (referred to as a static one) is based on sequential computation of anharmonic O-H stretching vibrational potential and numerical solution of the vibrational Schrodinger equation by the Numerov method. The second approach (referred to as a dynamic one) is based on molecular dynamics (MD) simulations performed within the atom-centered density matrix propagation scheme (ADMP) followed by spectral analysis of the velocity-velocity and dipole moment autocorrelation functions computed from the ADMP MD trajectories. All calculations are carried out within the density functional tight binding (DFTB) formalism. The computed properties are compared to the available experimental data and the advantages of the dynamic versus the static approach are outlined and analyzed in the context of detection of individual and non-covalently bonded molecular species relevant to climate science and atmospheric chemistry.
更多
查看译文
关键词
formic acid, atmospheric chemistry, molecular dynamics, atom-centered density matrix propagation scheme, anharmonic vibrational frequencies, statistical physics simulations, theoretical spectroscopy, density functional tight binding
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要