Protonated methane CH$_5^+$ is unique: It is an extremely fluxional molecule. All attempts to assign quantum numbers to the high-resolution transitions obtained over the last 20 years have failed because molecular rotation and vibration cannot be separated in the conventional way\footnote{Schmiedt, H., et al.{\it J. Chem. Phys.} {\bf 143} (15), 154302 (2015)}\footnote{Wodraszka, R. et al.{\it J. Phys. Chem. Lett.} {\bf 6}, 4229-4232 (2015)}. The first step towards a theoretical description is to include internal rotational degrees of freedom into the overall ones, which can be used to formulate a fundamentally new zero order approximation for the (now) generalized rotational states and energies. Predictions from this simple five-dimensional...
Separation of rotational and vibrational motion is a key concept in the analysis of the dynamics of ...
Separation of rotational and vibrational motion is a key concept in the analysis of the dynamics of ...
Author Institution: JILA, Department of Chemistry and Biochemistry, University of Colorado, Boulder,...
Protonated methane CH$_5^+$ is unique: It is an extremely fluxional molecule. All attempts to assign...
In the customary approach to the theoretical description of the nuclear motion in molecules, the mol...
This book presents a range of fundamentally new approaches to solving problems involving traditional...
Protonated methane, CH5+, has unusual vibrational and rotational behavior because its three nonequiv...
Customary theoretical models for molecular dynamics are based on a few fundamental assumptions like...
Wodraszka R, Manthe U. Ch5+: Symmetry and the Entangled Rovibrational Quantum States of a Fluxional ...
Protonated methane, CH$_5^+$, is the prototype of an extremely floppy molecule. To the best of our k...
Some time ago we developed a five dimensional SO(5) superrotor model [1] which describes the energy ...
In the customary approach to the theoretical description of the nuclear motion in molecules, the mol...
This paper treats the low energy rotation-vibration problem in CH5+, an extremely flexible molecule ...
Recently, we proposed a novel approach to the description of the rotation-vibration motion for extre...
Recently, we proposed a novel approach to the description of the rotation-vibration motion for extre...
Separation of rotational and vibrational motion is a key concept in the analysis of the dynamics of ...
Separation of rotational and vibrational motion is a key concept in the analysis of the dynamics of ...
Author Institution: JILA, Department of Chemistry and Biochemistry, University of Colorado, Boulder,...
Protonated methane CH$_5^+$ is unique: It is an extremely fluxional molecule. All attempts to assign...
In the customary approach to the theoretical description of the nuclear motion in molecules, the mol...
This book presents a range of fundamentally new approaches to solving problems involving traditional...
Protonated methane, CH5+, has unusual vibrational and rotational behavior because its three nonequiv...
Customary theoretical models for molecular dynamics are based on a few fundamental assumptions like...
Wodraszka R, Manthe U. Ch5+: Symmetry and the Entangled Rovibrational Quantum States of a Fluxional ...
Protonated methane, CH$_5^+$, is the prototype of an extremely floppy molecule. To the best of our k...
Some time ago we developed a five dimensional SO(5) superrotor model [1] which describes the energy ...
In the customary approach to the theoretical description of the nuclear motion in molecules, the mol...
This paper treats the low energy rotation-vibration problem in CH5+, an extremely flexible molecule ...
Recently, we proposed a novel approach to the description of the rotation-vibration motion for extre...
Recently, we proposed a novel approach to the description of the rotation-vibration motion for extre...
Separation of rotational and vibrational motion is a key concept in the analysis of the dynamics of ...
Separation of rotational and vibrational motion is a key concept in the analysis of the dynamics of ...
Author Institution: JILA, Department of Chemistry and Biochemistry, University of Colorado, Boulder,...