Conservation of electronic mechanical momentum in a molecule perturbed by periodic fields is discussed within the quadrupole approximation, i.e. assuming a spatially uniform magnetic field and electric field gradient. It is shown that the induced momentum is related to the electric polarizabilities of the electron distribution. Intramolecular static perturbations arising from nuclear magnetic moments and quadrupole moments are discussed
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
The Siegert states of atom in a static electric field are the solutions to the stationary Schrödinge...
Conservation of electronic mechanical momentum in a molecule perturbed by periodic fields is discuss...
The response of a molecule to static and dynamic electromagnetic fields and intramolecular perturbat...
The response of a molecule to static and dynamic electromagnetic fields and intramolecular perturbat...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
A method to compute distributed dipole-quadrupole polarizabilities is suggested. The method is based...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
The Siegert states of atom in a static electric field are the solutions to the stationary Schrödinge...
Conservation of electronic mechanical momentum in a molecule perturbed by periodic fields is discuss...
The response of a molecule to static and dynamic electromagnetic fields and intramolecular perturbat...
The response of a molecule to static and dynamic electromagnetic fields and intramolecular perturbat...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
A method to compute distributed dipole-quadrupole polarizabilities is suggested. The method is based...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
A simple model Hamiltonian is analyzed within the framework of time-dependent perturbation theory to...
The Siegert states of atom in a static electric field are the solutions to the stationary Schrödinge...