We demonstrate that, in suitably designed cells with undoped nematic liquid crystals, extraordinary-wave spatial solitons can be excited at every applied voltage without adjustments in the input polarization. Their walk-off, hence direction of propagation, is externally controlled over angles as large as 7 degrees. The results pave the way not only to polarization-forgiving generation but also to voltage readdressing of these extraordinary-wave nematicons. (c) 2005 Optical Society of Americ
In this work we present numerical results on the propagation of high power laser beams in nematic li...
We investigate, for the first time to our knowledge, the discrete propagation of near-infrared light...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
We demonstrate that, in suitably designed cells with undoped nematic liquid crystals, extraordinary-...
In certain materials, the spontaneous spreading of a laser beam ( owing to diffraction) can be compe...
In certain materials, the spontaneous spreading of a laser beam (owing to diffraction) can be compen...
Liquid crystals have been all along a fertile background for scientific re- search, from mathematics...
The spontaneous spreading of a laser beam can be compensated in complex media through the interplay ...
We report on the design, fabrication process and characterization of liquid crystal cells for invest...
We demonstrate, both experimentally and theoretically, excitation-dependent self-bending of spatial ...
Optical spatial solitons have been demonstrated in bulk nematic liquid crystals. We present an overv...
Nematic liquid crystals exhibit a saturable nonlinearity, nonlocal in time and in space, owing to li...
Light filaments or optical spatial solitons are self-confined (non-spreading) beams that originate f...
Waveguiding in liquid crystals can be achieved by controlling the molecular orientation by means of ...
Nonlinear systems respond to an excitation in a non-proportional way and do not satisfy the superpos...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
We investigate, for the first time to our knowledge, the discrete propagation of near-infrared light...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
We demonstrate that, in suitably designed cells with undoped nematic liquid crystals, extraordinary-...
In certain materials, the spontaneous spreading of a laser beam ( owing to diffraction) can be compe...
In certain materials, the spontaneous spreading of a laser beam (owing to diffraction) can be compen...
Liquid crystals have been all along a fertile background for scientific re- search, from mathematics...
The spontaneous spreading of a laser beam can be compensated in complex media through the interplay ...
We report on the design, fabrication process and characterization of liquid crystal cells for invest...
We demonstrate, both experimentally and theoretically, excitation-dependent self-bending of spatial ...
Optical spatial solitons have been demonstrated in bulk nematic liquid crystals. We present an overv...
Nematic liquid crystals exhibit a saturable nonlinearity, nonlocal in time and in space, owing to li...
Light filaments or optical spatial solitons are self-confined (non-spreading) beams that originate f...
Waveguiding in liquid crystals can be achieved by controlling the molecular orientation by means of ...
Nonlinear systems respond to an excitation in a non-proportional way and do not satisfy the superpos...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
We investigate, for the first time to our knowledge, the discrete propagation of near-infrared light...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...