We present a theoretical review of the properties of electronic excitations in nanostructures based on combinations of organic materials with inorganic semiconductors, having respectively Frenkel excitons and Wannier-Mott excitons with nearly equal energies. We show that in this case the resonant coupling between organic and inorganic quantum wells (or wires or dots) may lead to several interesting effects, such as splining of the excitonic spectrum and enhancement of the resonant optical nonlinearities. First, we discuss the properties of hybrid Frenkel-Wanner-Mott excitons, which appear when the energy splitting of the excitonic spectrum is large compared to the width of the exciton resonances (the case of strong resonant coupling). Such ...
Rapid advances in the growth techniques of multilayer structures incorporating molecular as well as ...
We consider a hybrid heterostructure made of an inorganic quantum well in close proximity with an or...
Semiconductor microcavities represent a rich playground for the investigation and exploitation of fu...
We present a theoretical review of the properties of electronic excitations in nanostructures based ...
In two-dimensional heterostructures made of semiconductor and organic layers, when resonance between...
In two-dimensional heterostructures made of semiconductor and organic layers, when resonance between...
In two-dimensional heterostructures made of semiconductor and organic layers, when resonance between...
We consider nanostructures that consist of both organic and inorganic materials, in particular, hete...
We consider nanostructures that consist of both organic and inorganic materials, in particular, hete...
We discuss the linear and nonlinear optical properties of organic-inorganic nanostructures (quantum ...
We discuss the linear and nonlinear optical properties of organic-inorganic nanostructures (quantum ...
In a system comprising an organic layer coupled to a semiconductor layer, if the energy of the Frenk...
In a system comprising an organic layer coupled to a semiconductor layer, if the energy of the Frenk...
We consider nanostructures consisting of both organic and inorganic materials, in particular, hetero...
Rapid advances in the growth techniques of multilayer structures incorporating molecular as well as ...
Rapid advances in the growth techniques of multilayer structures incorporating molecular as well as ...
We consider a hybrid heterostructure made of an inorganic quantum well in close proximity with an or...
Semiconductor microcavities represent a rich playground for the investigation and exploitation of fu...
We present a theoretical review of the properties of electronic excitations in nanostructures based ...
In two-dimensional heterostructures made of semiconductor and organic layers, when resonance between...
In two-dimensional heterostructures made of semiconductor and organic layers, when resonance between...
In two-dimensional heterostructures made of semiconductor and organic layers, when resonance between...
We consider nanostructures that consist of both organic and inorganic materials, in particular, hete...
We consider nanostructures that consist of both organic and inorganic materials, in particular, hete...
We discuss the linear and nonlinear optical properties of organic-inorganic nanostructures (quantum ...
We discuss the linear and nonlinear optical properties of organic-inorganic nanostructures (quantum ...
In a system comprising an organic layer coupled to a semiconductor layer, if the energy of the Frenk...
In a system comprising an organic layer coupled to a semiconductor layer, if the energy of the Frenk...
We consider nanostructures consisting of both organic and inorganic materials, in particular, hetero...
Rapid advances in the growth techniques of multilayer structures incorporating molecular as well as ...
Rapid advances in the growth techniques of multilayer structures incorporating molecular as well as ...
We consider a hybrid heterostructure made of an inorganic quantum well in close proximity with an or...
Semiconductor microcavities represent a rich playground for the investigation and exploitation of fu...