Spatial optical soliton propagation in any material is limited by the losses of the optical beam, which results in beam broadening. In nematic liquid crystals it is possible to tune the magnitude of the nonlinearity by means of a bias voltage. In this work we present the idea of increasing the nonlinearity along the propagation distance by changing the bias voltage. Next to a theoretical analysis, we present experimental proof of the validity of our method. The use of this technique offers a major advantage for optical interconnects because the beam broadening can be reduced over much longer propagation distances
We study light propagation in nematic liquid crystals in the context of spatial optical solitons for...
We investigate spatial optical solitons propagating in a medium with a saturable but adjustable nonl...
We study experimentally the propagation dynamics and interaction of a pair of mutually incoherent ne...
Spatial optical soliton propagation in any material is limited by the losses of the optical beam, wh...
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...
Optical spatial solitons have been demonstrated in bulk nematic liquid crystals. We present an overv...
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 ...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
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...
Nonlinear systems respond to an excitation in a non-proportional way and do not satisfy the superpos...
Restricted AccessWe have worked out the structure of optical spatial solitons in liquid crystals. Th...
Employing a low-frequency external electric field bias in nematic liquid crystals with negative diel...
We study light propagation in nematic liquid crystals in the context of spatial optical solitons for...
We investigate spatial optical solitons propagating in a medium with a saturable but adjustable nonl...
We study experimentally the propagation dynamics and interaction of a pair of mutually incoherent ne...
Spatial optical soliton propagation in any material is limited by the losses of the optical beam, wh...
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...
Optical spatial solitons have been demonstrated in bulk nematic liquid crystals. We present an overv...
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 ...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
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...
Nonlinear systems respond to an excitation in a non-proportional way and do not satisfy the superpos...
Restricted AccessWe have worked out the structure of optical spatial solitons in liquid crystals. Th...
Employing a low-frequency external electric field bias in nematic liquid crystals with negative diel...
We study light propagation in nematic liquid crystals in the context of spatial optical solitons for...
We investigate spatial optical solitons propagating in a medium with a saturable but adjustable nonl...
We study experimentally the propagation dynamics and interaction of a pair of mutually incoherent ne...