A nonlinear response theory of a quantum-mechanical system undergoing arbitrary relaxation and interacting with fields, some of which may be strong enough to saturate optical transitions, is developed. Explicit expressions for second-order and third-order susceptibilities are obtained. If the fields are weak, then these expressions show the existence of additional resonant contributions to χ (n) which arise due to inelastic collisions. Various applications of these χ (n)'s to modulation spectroscopy, four-wave mixing, and pump-probe experiments are discussed. The general structure suggests how the additional resonances can be used to determine inelastic rates in a Doppler-broadened medium. For saturating fields, χ (n)'s become dependent on ...
A general scheme is presented for calculating the nonlinear optical response in condensed phases whi...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A nonlinear response theory of a quantum-mechanical system undergoing arbitrary relaxation and inter...
Optical non-linearities and spectroscopy in fields that are strongly modulated and also intense are ...
The nonlinear-optical properties of a system whose collisional dynamics are strongly affected by int...
A general nonlinear response theory for the case of linear coupling of physical systems to arbitrary...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
We predict several effects associated with the optical response of systems prepared in a nonequilibr...
With an increasing coupling between light and mechanics, nonlinearities begin to play an important r...
Many molecular, quantum-dot, and optomechanical nanocavity-QED systems demonstrate strong nonlinear ...
The modification of the relaxation dynamics of a quantum system interacting with a strong laser fiel...
We show that a recent theory of strong field spectroscopy (SFS) [R. I. Cukier and M. Morillo, Phys. ...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A general scheme is presented for calculating the nonlinear optical response in condensed phases whi...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A nonlinear response theory of a quantum-mechanical system undergoing arbitrary relaxation and inter...
Optical non-linearities and spectroscopy in fields that are strongly modulated and also intense are ...
The nonlinear-optical properties of a system whose collisional dynamics are strongly affected by int...
A general nonlinear response theory for the case of linear coupling of physical systems to arbitrary...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
We predict several effects associated with the optical response of systems prepared in a nonequilibr...
With an increasing coupling between light and mechanics, nonlinearities begin to play an important r...
Many molecular, quantum-dot, and optomechanical nanocavity-QED systems demonstrate strong nonlinear ...
The modification of the relaxation dynamics of a quantum system interacting with a strong laser fiel...
We show that a recent theory of strong field spectroscopy (SFS) [R. I. Cukier and M. Morillo, Phys. ...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A general scheme is presented for calculating the nonlinear optical response in condensed phases whi...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...
A general scheme is presented for calculating the nonlinear optical response in condensed phases tha...