A simple model for the effective vibrational hamiltonian of the XH stretching vibrations in H2O, NH3 and CH4 is considered, based on a morse potential function for the bond stretches plus potential and kinetic energy coupling between pairs of bond oscillators. It is shown that this model can be set up as a matrix in local mode basis functions, or as a matrix in normal mode basis functions, leading to identical results. The energy levels obtained exhibit normal mode patterns at low vibrational excitation, and local mode patterns at high excitation. When the hamiltonian is set up in the normal mode basis it is shown that Darling-Dennison resonances must be included, and simple relations are found to exist between the xrs, gtt, and Krrss anhar...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.40]{LMvsLMPT.eps} \end{wrapfigure} Vibration...
The =CH2 AND =CD2 stretching vibrational overtones of H2C=CD2 have been studied up to V= 6 and V= 3,...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.40]{LMvsLMPT.eps} \end{wrapfigure} Vibration...
The conventional ideas about normal modes and molecular vibration are currently undergoing closer e...
The conventional ideas about normal modes and molecular vibration are currently undergoing closer e...
Author Institution: Laboratory of Physical Chemistry, University of HelsinkiSimple curvilinear inter...
For molecules with C-H bonds, a local mode description of the bonds is often adopted to interpret th...
Author Institution: Laboratory of Physical Chemistry, University of HelsinkiSimple curvilinear inter...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
$^{[1]}$ M. S. CHILD and L. HALONEN, Advances in Chemical Physics Volume LVII $^{[2]}$ F. IACHELLO a...
$^{[1]}$ M. S. CHILD and L. HALONEN, Advances in Chemical Physics Volume LVII $^{[2]}$ F. IACHELLO a...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.40]{LMvsLMPT.eps} \end{wrapfigure} Vibration...
The =CH2 AND =CD2 stretching vibrational overtones of H2C=CD2 have been studied up to V= 6 and V= 3,...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.40]{LMvsLMPT.eps} \end{wrapfigure} Vibration...
The conventional ideas about normal modes and molecular vibration are currently undergoing closer e...
The conventional ideas about normal modes and molecular vibration are currently undergoing closer e...
Author Institution: Laboratory of Physical Chemistry, University of HelsinkiSimple curvilinear inter...
For molecules with C-H bonds, a local mode description of the bonds is often adopted to interpret th...
Author Institution: Laboratory of Physical Chemistry, University of HelsinkiSimple curvilinear inter...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
The least action principle yields the Euler-Lagrange equations, which explain molecular vibrations i...
$^{[1]}$ M. S. CHILD and L. HALONEN, Advances in Chemical Physics Volume LVII $^{[2]}$ F. IACHELLO a...
$^{[1]}$ M. S. CHILD and L. HALONEN, Advances in Chemical Physics Volume LVII $^{[2]}$ F. IACHELLO a...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.40]{LMvsLMPT.eps} \end{wrapfigure} Vibration...
The =CH2 AND =CD2 stretching vibrational overtones of H2C=CD2 have been studied up to V= 6 and V= 3,...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.40]{LMvsLMPT.eps} \end{wrapfigure} Vibration...