The turn of this century has undoubtedly brought in tremendous interest in the development of organic electronic and photonic devices. As an aid of understanding the physics behind the device mechanism, various experimental tools are innovated and applied. Herein, various nonlinear optical techniques that are employed towards characterization of these organic material-based devices are reviewed. We describe experimental techniques based on second-harmonic generation (SHG) and sum-frequency generation (SFG) and review some potential applications that basically probe the electric field distribution in the bulk and at interfaces of the electronic and photonic devices. SFG carries information about vibrational spectrum of molecules at the surfa...
The buried interface of an organic semiconductor at the dielectric has a large on influence on the f...
$^{1}$ For a recent review, see G.L. Richmond, J.M. Robinson and V.L. Shannon, Prog. in Surf. Sci. 2...
International audienceHere we present the characterization of dielectric-semiconductor interfaces us...
Interfaces and surfaces are ubiquitous in people’s daily life and they play a pivotal role in many r...
This paper reviews aspects of nonlinear optical spectroscopy of interfaces. The emphasis is put on s...
Second order nonlinear optical (NLO) properties of organic polymer thin films were studied by optica...
International audienceThis paper reviews the application of second harmonic generation (SHG) to char...
The inherent interface sensitivity of the second harmonic generation (SHG) setup developed and reali...
Organic electronics is a branch of modern electronics, and it deals with organic materials, such as ...
This thesis is focused on demonstrating advancements and potentials of the time-resolved second harm...
Aspects related to the magnitude and stability of the nonlinear response of organic nonlinear optica...
Nonlinear optics is a wide research field based on the nonlinear relationship of the electric field ...
Surface enhanced second harmonic generation (SE SHG) experiments on molecular structures, macrocycle...
Surface enhanced second harmonic generation (SE SHG) experiments on molecular structures, macrocycle...
Second harmonic generation (SHG) has been proven a uniquely effective technique in the investigation...
The buried interface of an organic semiconductor at the dielectric has a large on influence on the f...
$^{1}$ For a recent review, see G.L. Richmond, J.M. Robinson and V.L. Shannon, Prog. in Surf. Sci. 2...
International audienceHere we present the characterization of dielectric-semiconductor interfaces us...
Interfaces and surfaces are ubiquitous in people’s daily life and they play a pivotal role in many r...
This paper reviews aspects of nonlinear optical spectroscopy of interfaces. The emphasis is put on s...
Second order nonlinear optical (NLO) properties of organic polymer thin films were studied by optica...
International audienceThis paper reviews the application of second harmonic generation (SHG) to char...
The inherent interface sensitivity of the second harmonic generation (SHG) setup developed and reali...
Organic electronics is a branch of modern electronics, and it deals with organic materials, such as ...
This thesis is focused on demonstrating advancements and potentials of the time-resolved second harm...
Aspects related to the magnitude and stability of the nonlinear response of organic nonlinear optica...
Nonlinear optics is a wide research field based on the nonlinear relationship of the electric field ...
Surface enhanced second harmonic generation (SE SHG) experiments on molecular structures, macrocycle...
Surface enhanced second harmonic generation (SE SHG) experiments on molecular structures, macrocycle...
Second harmonic generation (SHG) has been proven a uniquely effective technique in the investigation...
The buried interface of an organic semiconductor at the dielectric has a large on influence on the f...
$^{1}$ For a recent review, see G.L. Richmond, J.M. Robinson and V.L. Shannon, Prog. in Surf. Sci. 2...
International audienceHere we present the characterization of dielectric-semiconductor interfaces us...