We study experimentally the interaction of spatial optical solitons with curved dielectric surfaces in unbiased nematic liquid crystals. We demonstrate that this interaction depends on the curvature of the surface and the walk-off, and it can be employed for efficient routing and control of the soliton trajectories. We also observe a large-angle total internal reflection of the soliton beam from an interface between liquid crystal and air.The authors acknowledge the financial support of the Australian Research Council
In this work we present numerical results on the propagation of high power laser beams in nematic li...
Waveguiding in liquid crystals can be achieved by controlling the molecular orientation by means of ...
Light filaments or optical spatial solitons are self-confined (non-spreading) beams that originate f...
We report on what is, to our knowledge, the first experimental observation of spatial soliton intera...
In certain materials, the spontaneous spreading of a laser beam (owing to diffraction) can be compen...
In certain materials, the spontaneous spreading of a laser beam ( owing to diffraction) can be compe...
The spontaneous spreading of a laser beam can be compensated in complex media through the interplay ...
We investigate, both theoretically and experimentally, spatial soliton interaction with dielectric i...
We demonstrate that optical spatial solitons with non-rectilinear trajectories can be made to propag...
We study the interaction of a spatial soliton waveguide with a voltage defined and electrically tune...
We investigate, both theoretically and experimentally, spatial soliton interaction with dielectric i...
Liquid crystals have been all along a fertile background for scientific re- search, from mathematics...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
We analyze the angular steering of self-confined light beams, i.e., spatial solitons, in nematic liq...
We investigate total internal reflection of optical spatial solitons at the interface between two re...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
Waveguiding in liquid crystals can be achieved by controlling the molecular orientation by means of ...
Light filaments or optical spatial solitons are self-confined (non-spreading) beams that originate f...
We report on what is, to our knowledge, the first experimental observation of spatial soliton intera...
In certain materials, the spontaneous spreading of a laser beam (owing to diffraction) can be compen...
In certain materials, the spontaneous spreading of a laser beam ( owing to diffraction) can be compe...
The spontaneous spreading of a laser beam can be compensated in complex media through the interplay ...
We investigate, both theoretically and experimentally, spatial soliton interaction with dielectric i...
We demonstrate that optical spatial solitons with non-rectilinear trajectories can be made to propag...
We study the interaction of a spatial soliton waveguide with a voltage defined and electrically tune...
We investigate, both theoretically and experimentally, spatial soliton interaction with dielectric i...
Liquid crystals have been all along a fertile background for scientific re- search, from mathematics...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
We analyze the angular steering of self-confined light beams, i.e., spatial solitons, in nematic liq...
We investigate total internal reflection of optical spatial solitons at the interface between two re...
In this work we present numerical results on the propagation of high power laser beams in nematic li...
Waveguiding in liquid crystals can be achieved by controlling the molecular orientation by means of ...
Light filaments or optical spatial solitons are self-confined (non-spreading) beams that originate f...