We investigate soliton self-steering owing to the power-dependent walk-off in undoped nematic liquid crystals. The theoretical analysis, carried out in three dimensions and then reduced to an effective two-dimensional model retaining the nonlocal features, clarifies the trade-off between self-focusing and self-steering, as mediated by the initial orientation of the optic axis. Experimental results obtained in planar cells are in excellent agreement with the predictions, even when employing the two-dimensional model and in the presence of linear losses. (C) 2010 Optical Society of Americ
We analyze the angular steering of self-confined light beams, i.e., spatial solitons, in nematic liq...
We demonstrate power-dependent steering of self-confined light beams propagating in the nonparaxial ...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
We investigate soliton self-steering owing to the power-dependent walk-off in undoped nematic liquid...
We demonstrate, both experimentally and theoretically, excitation-dependent self-bending of spatial ...
We model spatial solitons in nematic liquid crystals, accounting for nonperturbative excitation and ...
We study the angular steering of spatial solitons in nematic liquid crystals, i.e. nematicons, explo...
In certain materials, the spontaneous spreading of a laser beam (owing to diffraction) can be compen...
Using an external voltage and interdigitated electrodes in a liquid crystalline cell, we demonstrate...
We report on power-dependent self-transverse acceleration of optical spatial solitons in two setting...
Using an external voltage and interdigitated electrodes in a liquid crystalline cell, we demonstrate...
In certain materials, the spontaneous spreading of a laser beam ( owing to diffraction) can be compe...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
We study the angular steering of spatial solitons in nematic liquid crystals, i.e. nematicons, explo...
The spontaneous spreading of a laser beam can be compensated in complex media through the interplay ...
We analyze the angular steering of self-confined light beams, i.e., spatial solitons, in nematic liq...
We demonstrate power-dependent steering of self-confined light beams propagating in the nonparaxial ...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
We investigate soliton self-steering owing to the power-dependent walk-off in undoped nematic liquid...
We demonstrate, both experimentally and theoretically, excitation-dependent self-bending of spatial ...
We model spatial solitons in nematic liquid crystals, accounting for nonperturbative excitation and ...
We study the angular steering of spatial solitons in nematic liquid crystals, i.e. nematicons, explo...
In certain materials, the spontaneous spreading of a laser beam (owing to diffraction) can be compen...
Using an external voltage and interdigitated electrodes in a liquid crystalline cell, we demonstrate...
We report on power-dependent self-transverse acceleration of optical spatial solitons in two setting...
Using an external voltage and interdigitated electrodes in a liquid crystalline cell, we demonstrate...
In certain materials, the spontaneous spreading of a laser beam ( owing to diffraction) can be compe...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
We study the angular steering of spatial solitons in nematic liquid crystals, i.e. nematicons, explo...
The spontaneous spreading of a laser beam can be compensated in complex media through the interplay ...
We analyze the angular steering of self-confined light beams, i.e., spatial solitons, in nematic liq...
We demonstrate power-dependent steering of self-confined light beams propagating in the nonparaxial ...
In this work we present numerical results on the propagation of high power laser beams in nematic li...