Improved Potential Energy Surface of Ozone Constructed Using the Fitting by Permutationally Invariant Polynomial Function

M. Ayouz, D. Babikov
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引用次数: 9

Abstract

New global potential energy surface for the ground electronic state of ozone is constructed at the complete basis set level of the multireference configuration interaction theory. A method of fitting the data points by analytical permutationally invariant polynomial function is adopted. A small set of 500 points is preoptimized using the old surface of ozone. In this procedure the positions of points in the configuration space are chosen such that the RMS deviation of the fit is minimized. New ab initio calculations are carried out at these points and are used to build new surface. Additional points are added to the vicinity of the minimum energy path in order to improve accuracy of the fit, particularly in the region where the surface of ozone exhibits a shallow van der Waals well. New surface can be used to study formation of ozone at thermal energies and its spectroscopy near the dissociation threshold.
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用置换不变多项式函数拟合构造改进的臭氧势能面
在多参考组态相互作用理论的完全基集水平上,构造了臭氧基电子态的新的全局势能面。采用解析排列不变多项式函数拟合数据点的方法。使用旧的臭氧表面对500个点的小集合进行了预优化。在这个过程中,点的位置在配置空间中选择,使拟合的均方根偏差最小。在这些点上进行新的从头计算,并用于构建新的表面。为了提高拟合的准确性,在最小能量路径附近增加了额外的点,特别是在臭氧表面表现出浅范德华井的区域。新的表面可以用来研究臭氧在热能下的形成及其在解离阈值附近的光谱。
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