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

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.

Document Details

Document Type
Pub Defense Publication
Publication Date
Nov 10, 2012
Source ID
10.1155/2012/951371

Entities

People

  • Dmitri Babikov
  • Mehdi Ayouz

Organizations

  • Air Force Office of Scientific Research
  • Marquette University

Tags

Readers

  • Approximation Theory.
  • Quantum Chemistry
  • Spectroscopy.

Technology Areas

  • Microelectronics
  • Space