In the computation of molecular dynamic magnetizabilities and magnetic dipole moments, three different reference points are required: (i) origin of coordinate system, (ii) origin of vector potential A, and (iii) origin of multipole expansion. This study shows that methods relying on continuous translation of origin of the current density I-B(r,?,t) induced by optical magnetic fields provide an effective solution to the problem of choices (i) and (ii), in that they yield origin independent I-B within the algebraic approximation, for any basis set. Frequency-dependent magnetizabilities are also invariant with respect to (iii), as a consequence of symmetry, for a number of molecular point groups. In molecules of lower symmetries, computed magn...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The response of a molecule to static and dynamic electromagnetic fields and intramolecular perturbat...
Concise information on the general features of the quantum-mechanical current density induced in the...
In the computation of molecular dynamic magnetizabilities and magnetic dipole moments, three differe...
: The electronic current density, induced in a molecule by the optical magnetic field associated wit...
The third-rank hypermagnetizabilities of three small molecules have been evaluated at the Hartree-Fo...
Mathematical tools for solving the real autonomous system of linear differential equations for the t...
The notion of the electric dipole polarizability density function of atoms and molecules has been co...
We give an account of some recent advances in the development of ab initio methods for the calculati...
Most available literature on molecular systems in magnetic fields are limited to special cases: Eith...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
A theoretical method is presented for determining molecular hyper-magnetizabilities and magnetic shi...
The performance of several density-functional theory (DFT) methods for the calculation of current de...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The response of a molecule to static and dynamic electromagnetic fields and intramolecular perturbat...
Concise information on the general features of the quantum-mechanical current density induced in the...
In the computation of molecular dynamic magnetizabilities and magnetic dipole moments, three differe...
: The electronic current density, induced in a molecule by the optical magnetic field associated wit...
The third-rank hypermagnetizabilities of three small molecules have been evaluated at the Hartree-Fo...
Mathematical tools for solving the real autonomous system of linear differential equations for the t...
The notion of the electric dipole polarizability density function of atoms and molecules has been co...
We give an account of some recent advances in the development of ab initio methods for the calculati...
Most available literature on molecular systems in magnetic fields are limited to special cases: Eith...
The response of a molecule to a static inhomogeneous magnetic-field is rationalized via multipole ma...
A theoretical method is presented for determining molecular hyper-magnetizabilities and magnetic shi...
The performance of several density-functional theory (DFT) methods for the calculation of current de...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The response of a molecule to static and dynamic electromagnetic fields and intramolecular perturbat...
Concise information on the general features of the quantum-mechanical current density induced in the...