A numerical application of linear-molecule symmetry properties, described by the D ∞ h point group, is formulated in terms of lower-order symmetry groups D n h with finite n. Character tables and irreducible representation transformation matrices are presented for D n h groups with arbitrary n-values. These groups can subsequently be used in the construction of symmetry-adapted ro-vibrational basis functions for solving the Schrödinger equations of linear molecules. Their implementation into the symmetrisation procedure based on a set of “reduced” vibrational eigenvalue problems with simplified Hamiltonians is used as a practical example. It is shown how the solutions of these eigenvalue pro...
The use of molecular simulations and ab initio calculations to predict thermodynamic properties of m...
It is demonstrated that the symmetrization of a quantum mechanical rotational spectrum of freely rot...
Kenneth Fox is NRC-NASA Resident Research Associate, on leave from The University of Tennessee.Autho...
A numerical application of linear-molecule symmetry properties, described by the D ∞ h ...
We present a general, numerically motivated approach to the construction of symmetry-adapted basis f...
Special treatment is required for ro-vibrational calculations involving polyatomic molecules of line...
Author Institution: Division of Pure Physics, National Research Council of Canada; Academy of Scienc...
Symmetry and group theory provide us with a formal method for the description of the geometry of obj...
In the customary approach to the theoretical description of the nuclear motion in molecules, the mol...
$^{a}$M. Rey, V. Boudon, Ch. Wenger, G. Pierre and B. Sartakov, J. Mol. Spectrosc., in press (2003)....
In this work we propose a symmetry projection approach to build a rovibrational basis for methane. ...
Author Institution: Facult\'{e} des Sciences deA large number of computations have been performed on...
The memory cost of representing vibrational wavefunctions of polyatomic molecules with more than 6 a...
Presented by G. Amat, Laboratoire de Spectroscopie Mol\'{e}culaire, Paris, France. $^{1}$ W. H. Shaf...
An algebraic approach to molecular rotation‐vibration spectra, similar to that used in the analysis ...
The use of molecular simulations and ab initio calculations to predict thermodynamic properties of m...
It is demonstrated that the symmetrization of a quantum mechanical rotational spectrum of freely rot...
Kenneth Fox is NRC-NASA Resident Research Associate, on leave from The University of Tennessee.Autho...
A numerical application of linear-molecule symmetry properties, described by the D ∞ h ...
We present a general, numerically motivated approach to the construction of symmetry-adapted basis f...
Special treatment is required for ro-vibrational calculations involving polyatomic molecules of line...
Author Institution: Division of Pure Physics, National Research Council of Canada; Academy of Scienc...
Symmetry and group theory provide us with a formal method for the description of the geometry of obj...
In the customary approach to the theoretical description of the nuclear motion in molecules, the mol...
$^{a}$M. Rey, V. Boudon, Ch. Wenger, G. Pierre and B. Sartakov, J. Mol. Spectrosc., in press (2003)....
In this work we propose a symmetry projection approach to build a rovibrational basis for methane. ...
Author Institution: Facult\'{e} des Sciences deA large number of computations have been performed on...
The memory cost of representing vibrational wavefunctions of polyatomic molecules with more than 6 a...
Presented by G. Amat, Laboratoire de Spectroscopie Mol\'{e}culaire, Paris, France. $^{1}$ W. H. Shaf...
An algebraic approach to molecular rotation‐vibration spectra, similar to that used in the analysis ...
The use of molecular simulations and ab initio calculations to predict thermodynamic properties of m...
It is demonstrated that the symmetrization of a quantum mechanical rotational spectrum of freely rot...
Kenneth Fox is NRC-NASA Resident Research Associate, on leave from The University of Tennessee.Autho...