We develop a phenomenological model of anisotropy in selfdefocusing photorefractive crystals. In addition to an independent term due to nonlinear susceptibility, we introduce a nonlinear, non-separable correction to the spectral diffraction operator. The model successfully describes the crossover between photovoltaic and photorefractive responses and the spatially dispersive shock wave behavior of a nonlinearly spreading Gaussian input beam. It should prove useful for characterizing internal charge dynamics in complex materials and for accurate image reconstruction through nonlinear media
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
We develop a theory of vectorial wave coupling in cubic photorefractive crystals placed in an altern...
The phase shift induced on a Gaussian beam interacting with a nonlinear medium determines the far fi...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
We predict self-focusing and self-trapping of optical beams propagating in unbiased centrosymmetric ...
The basic physical principles responsible for two-wave interaction via an impressed grati...
We report the first observation of self-modified optical diffraction, beam ellipticity recovery and ...
In this paper we have studied the Linearity and Non-linearity of Photorefractive effect in materials...
In this paper we have studied the Linearity and Non-linearity of Photorefractive effect in materials...
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
We develop a theory of vectorial wave coupling in cubic photorefractive crystals placed in an altern...
The phase shift induced on a Gaussian beam interacting with a nonlinear medium determines the far fi...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
International audienceWe propose a powerful method to numerically solve the propagation of light in ...
We predict self-focusing and self-trapping of optical beams propagating in unbiased centrosymmetric ...
The basic physical principles responsible for two-wave interaction via an impressed grati...
We report the first observation of self-modified optical diffraction, beam ellipticity recovery and ...
In this paper we have studied the Linearity and Non-linearity of Photorefractive effect in materials...
In this paper we have studied the Linearity and Non-linearity of Photorefractive effect in materials...
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
This paper presents a numerical modeling of the temporal evolution of the refraction index induced b...
We develop a theory of vectorial wave coupling in cubic photorefractive crystals placed in an altern...