skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: DYNAMICAL ANALYSIS OF HIGHLY EXCITED MOLECULAR SPECTRA

Technical Report ·
DOI:https://doi.org/10.2172/842017· OSTI ID:842017

Spectra and internal dynamics of highly excited molecules are essential to understanding processes of fundamental importance for combustion, including intramolecular energy transfer and isomerization reactions. The goal of our program is to develop new theoretical tools to unravel information about intramolecular dynamics encoded in highly excited experimental spectra. We want to understand the formations of ''new vibrational modes'' when the ordinary normal modes picture breaks down in highly excited vibrations. We use bifurcation analysis of semiclassical versions of the effective Hamiltonians used by spectroscopists to fit complex experimental spectra. Specific molecular systems are of interest for their relevance to combustion and the availability of high-quality experimental data. Because of its immense importance in combustion, the isomerizing acetylene/vinylidene system has been the object of long-standing experimental and theoretical research. We have made significant progress in systematically understanding the bending dynamics of the acetylene system. We have begun to make progress on extending our methodology to the full bend-stretch vibrational degrees of freedom, including dynamics with multiple wells and above barrier motion, and time-dependent dynamics. For this, development of our previous methods using spectroscopic fitting Hamiltonians is needed, for example, for systems with multiple barriers.

Research Organization:
Univ. of Oregon, Eugene, OR (United States)
Sponsoring Organization:
USDOE Office of Science (SC)
DOE Contract Number:
FG03-98ER14848
OSTI ID:
842017
Report Number(s):
234020; TRN: US200707%%169
Country of Publication:
United States
Language:
English

Similar Records

Acetylene at the threshold of isomerization
Journal Article · Thu Apr 13 00:00:00 EDT 2000 · Journal of Physical Chemistry A: Molecules, Spectroscopy, Kinetics, Environment, amp General Theory · OSTI ID:842017

Toward spectroscopically accurate global ab initio potential energy surface for the acetylene-vinylidene isomerization
Journal Article · Sun Dec 28 00:00:00 EST 2014 · Journal of Chemical Physics · OSTI ID:842017

Vinylidene: Potential energy surface and unimolecular reaction dynamics
Journal Article · Tue May 01 00:00:00 EDT 1984 · J. Chem. Phys.; (United States) · OSTI ID:842017